WO2004008445A1 - 情報記録装置及び情報記録再生装置 - Google Patents
情報記録装置及び情報記録再生装置 Download PDFInfo
- Publication number
- WO2004008445A1 WO2004008445A1 PCT/JP2003/008893 JP0308893W WO2004008445A1 WO 2004008445 A1 WO2004008445 A1 WO 2004008445A1 JP 0308893 W JP0308893 W JP 0308893W WO 2004008445 A1 WO2004008445 A1 WO 2004008445A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- light
- recording medium
- information
- optical
- tape
- Prior art date
Links
- 230000003287 optical effect Effects 0.000 claims abstract description 1296
- 238000001514 detection method Methods 0.000 claims description 86
- 230000010287 polarization Effects 0.000 claims description 75
- 230000008859 change Effects 0.000 claims description 33
- 230000008054 signal transmission Effects 0.000 claims description 19
- 238000000034 method Methods 0.000 claims description 5
- 230000004044 response Effects 0.000 claims description 4
- 230000009467 reduction Effects 0.000 abstract description 3
- 238000010586 diagram Methods 0.000 description 27
- 102100033472 Lysosomal-trafficking regulator Human genes 0.000 description 11
- 101150085479 CHS2 gene Proteins 0.000 description 5
- 230000000694 effects Effects 0.000 description 5
- CNQCVBJFEGMYDW-UHFFFAOYSA-N lawrencium atom Chemical compound [Lr] CNQCVBJFEGMYDW-UHFFFAOYSA-N 0.000 description 5
- 101150026868 CHS1 gene Proteins 0.000 description 4
- 101001018064 Homo sapiens Lysosomal-trafficking regulator Proteins 0.000 description 4
- 101000667110 Homo sapiens Vacuolar protein sorting-associated protein 13B Proteins 0.000 description 4
- 101100113485 Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) chs-3 gene Proteins 0.000 description 4
- 238000012423 maintenance Methods 0.000 description 3
- 230000006872 improvement Effects 0.000 description 2
- 239000013307 optical fiber Substances 0.000 description 2
- 230000010355 oscillation Effects 0.000 description 2
- 230000008569 process Effects 0.000 description 2
- 241000272525 Anas platyrhynchos Species 0.000 description 1
- 101100330725 Arabidopsis thaliana DAR4 gene Proteins 0.000 description 1
- 101100473585 Arabidopsis thaliana RPP4 gene Proteins 0.000 description 1
- 101150021174 CHS3 gene Proteins 0.000 description 1
- 101100167214 Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) chsA gene Proteins 0.000 description 1
- 101100377543 Gerbera hybrida 2PS gene Proteins 0.000 description 1
- 101100439693 Ustilago maydis (strain 521 / FGSC 9021) CHS4 gene Proteins 0.000 description 1
- 238000003491 array Methods 0.000 description 1
- 230000008901 benefit Effects 0.000 description 1
- 230000005540 biological transmission Effects 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 150000001768 cations Chemical class 0.000 description 1
- 239000011159 matrix material Substances 0.000 description 1
- 230000007246 mechanism Effects 0.000 description 1
- 238000002864 sequence alignment Methods 0.000 description 1
- -1 · · · Proteins 0.000 description 1
Classifications
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/002—Recording, reproducing or erasing systems characterised by the shape or form of the carrier
- G11B7/003—Recording, reproducing or erasing systems characterised by the shape or form of the carrier with webs, filaments or wires, e.g. belts, spooled tapes or films of quasi-infinite extent
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/12—Heads, e.g. forming of the optical beam spot or modulation of the optical beam
- G11B7/14—Heads, e.g. forming of the optical beam spot or modulation of the optical beam specially adapted to record on, or to reproduce from, more than one track simultaneously
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/08—Disposition or mounting of heads or light sources relatively to record carriers
- G11B7/09—Disposition or mounting of heads or light sources relatively to record carriers with provision for moving the light beam or focus plane for the purpose of maintaining alignment of the light beam relative to the record carrier during transducing operation, e.g. to compensate for surface irregularities of the latter or for track following
- G11B7/0901—Disposition or mounting of heads or light sources relatively to record carriers with provision for moving the light beam or focus plane for the purpose of maintaining alignment of the light beam relative to the record carrier during transducing operation, e.g. to compensate for surface irregularities of the latter or for track following for track following only
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11B—INFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
- G11B7/00—Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
- G11B7/08—Disposition or mounting of heads or light sources relatively to record carriers
- G11B7/09—Disposition or mounting of heads or light sources relatively to record carriers with provision for moving the light beam or focus plane for the purpose of maintaining alignment of the light beam relative to the record carrier during transducing operation, e.g. to compensate for surface irregularities of the latter or for track following
- G11B7/0908—Disposition or mounting of heads or light sources relatively to record carriers with provision for moving the light beam or focus plane for the purpose of maintaining alignment of the light beam relative to the record carrier during transducing operation, e.g. to compensate for surface irregularities of the latter or for track following for focusing only
Definitions
- the invention described in the claims of the present application provides a state in which a light beam modulated according to information to be recorded on an optical recording medium is made incident to record information to be recorded on the optical recording medium.
- An optical beam is incident on an optical recording medium, and an optical beam modulated according to information recorded on the optical recording medium is obtained from the optical recording medium, and information is reproduced based on the obtained optical beam.
- the present invention relates to an information recording / reproducing device to be obtained. Background art
- multi-beam recording / reproducing technology high-density recording of information is achieved by using a light beam such as a laser beam for recording and reproducing information, and recording and reproducing information. By using a plurality of beams which are independent of each other, a high transfer rate of recording or reproduction information can be achieved.
- a tape-shaped optical recording medium that is, an optical tape recording / reproducing apparatus using an optical tape is conventionally known.
- FIG. 1 shows a main part of an example of a conventionally proposed optical tape recording / reproducing apparatus.
- the optical tape recording / reproducing apparatus shown in FIG. 1 includes a laser light source 1 that continuously emits a single laser light beam as a parallel light beam.
- a laser light beam emitted from a laser light source 1 enters a beam forming hologram 2.
- a single laser light beam which is a parallel light beam emitted from the laser light source 1, is divided into a plurality of laser light beams each forming a parallel light beam. Cracked. That is, the beam forming hologram 2 splits and forms a plurality of parallel light beams from a single parallel light beam.
- the plurality of laser light beams obtained from the beam forming hologram 2 enter the polarization beam splitter 3 and are reflected downward at the polarization beam splitter 3 in FIG. Passes through the condenser lens 5.
- the condensing lens 5 converges a plurality of laser light beams that have passed through the quarter-wave plate 4 onto a two-dimensional light modulation unit 6.
- the two-dimensional light modulator 6 is configured such that a plurality of reflection-type light modulators are two-dimensionally arranged at a predetermined mutual interval on a common plane portion.
- a plurality of laser beams from the condenser lens 5 form a plurality of two-dimensionally arranged light spots P as shown in FIG. 2 on a common plane in the two-dimensional light modulator 6.
- 64 two-dimensionally arranged laser light beams are incident on the two-dimensional light modulation unit 6.
- the plurality of reflection type optical modulators arranged two-dimensionally on the common plane portion of the two-dimensional light modulation unit 6 are arranged such that a plurality of laser light beams incident on the two-dimensional light modulation unit 6 Positions respectively correspond to the plurality of light spots P formed on the common plane portion.
- Fig. 3 shows an example of an arrangement arrangement of a plurality of reflection type optical modulators in the two-dimensional light modulation unit 6.
- each of the plurality of reflection type optical modulators is a rectangular portion denoted by LM. 'It is.
- an optical spot P is formed in each reflection type optical modulator LM.
- each of the plurality of reflection type optical modulators LM arranged two-dimensionally on the common plane portion of the two-dimensional optical modulator 6 a laser spot is incident upon the laser light beam.
- the rear surface opposite to the light incident surface on which is formed a light reflecting surface RF.
- a modulation control signal transmission unit 7 In connection with such a two-dimensional light modulation unit 6, a modulation control signal transmission unit 7 is provided.
- the modulation control signal transmitting section 7 forms a plurality of modulation control signals SM according to information to be recorded, and supplies them to the plurality of reflection type optical modulators in the two-dimensional light modulation section 6, respectively.
- each of the plurality of reflection type optical modulators in the two-dimensional light modulation unit 6 modulates the laser light beam incident thereon and reflected therefrom in accordance with the modulation control signal SM as described above. .
- Such modulation of the laser light beam is performed by changing the amount of reflection of the incident laser light beam according to the modulation control signal SM. Note that, depending on the content of the modulation control signal SM from the modulation control signal transmitting unit 7, the laser light beam incident on each reflection type optical modulator is reflected without being substantially modulated. You.
- a plurality of reflective optical modulators two-dimensionally arranged on the common plane portion are respectively modulated according to the modulation control signal SM and reflected by the plurality of reflective optical modulators.
- Laser light beam or two-dimensionally arranged on a common plane The plurality of laser light beams reflected without being modulated by the plurality of reflection type optical modulators are obtained as being directed to the condenser lens 5.
- the plurality of laser light beams obtained from the two-dimensional light modulator 6 pass through the condenser lens 5 and the quarter-wave plate 4, and enter the polarization beam splitter 3.
- the plurality of laser light beams obtained from the two-dimensional light modulator 6 incident on the polarization beam splitter 3 are reciprocated through the quarter-wave plate 4, and are incident on the polarization beam splitter 3.
- the polarization plane is rotated by 90 ° as compared with the plurality of laser beams from the beam forming hologram 2 and transmits through the polarization beam splitter 3.
- the plurality of laser light beams transmitted through the polarizing beam splitter 3 pass through a quarter-wave plate 8 and enter an optical tape 10 as an optical recording medium through an optical system 9 for controlling a light beam. I do.
- the optical system 9 is provided with a focus control for obtaining a proper focusing state on the optical tape 10 for each of the plurality of laser light beams incident on the optical tape 10, and a plurality of light beams incident on the optical tape 10.
- Each of the laser light beams is incident on an appropriate position on the optical tape 10 for tracking control.
- the optical tape 10 travels, for example, in a direction indicated by an arrow A by a tape drive mechanism (not shown).
- a plurality of laser light beams passing through the optical system 9 are incident on the optical tape 10, for example, as shown in FIG. 5, a plurality of laser light beams are arranged two-dimensionally on the optical tape 10.
- an optical tape is used. Sixty-four laser light beams arranged two-dimensionally in 10 are incident.
- the plurality of optical spots Q formed on the optical tape 10 and arranged two-dimensionally are arranged such that one of two orthogonal arrangement directions in the arrangement is indicated by an arrow A.
- the predetermined angle ⁇ is formed with respect to the running direction of the tape 10.
- the plurality of laser light beams incident on the optical tape 10 are not subjected to the modulation in the two-dimensional light modulator 6, they are modulated according to the information recorded on the optical tape 10. At the same time, the light is reflected on the optical tape 10 and is obtained from the optical tape 10 toward the optical system 9.
- the plurality of laser light beams obtained from the optical tape 10 pass through the optical system 9 and the ⁇ wavelength plate 8 and enter the polarization beam splitter 3.
- the plurality of laser beams obtained from the optical tape 10 incident on the polarizing beam splitter 3 have been transmitted back and forth through the quarter-wave plate 8, and thus are incident on the polarizing beam splitter 3.
- the polarization plane is rotated 90 ° as compared with the plurality of laser light beams from the two-dimensional light modulation unit 6, and the light is reflected rightward in FIG. 1 by the polarization beam splitter 3.
- the plurality of laser beams reflected by the polarizing beam splitter 3 are A part of the light is incident on the light beam splitter 11 and a part of the light is reflected downward in FIG. 1 at the light beam splitter 11. 1 and 3, while the other part is an optical beam splitter
- the light passes through 11 and enters the light detection unit 15 through an optical element 14 such as a condenser lens.
- the focus tracking detector 13 outputs an output signal SF and an output signal SF indicating the focus state of the plurality of laser light beams incident on the optical tape 10 in accordance with the plurality of laser light beams incident through the optical element 12.
- An output signal ST indicating the tracking state is transmitted.
- These output signals SF and ST are used for force control and tracking control for each of the plurality of laser light beams entering the optical tape 10 in the optical system 9.
- the light detection unit 15 obtains a plurality of output signals SI, each of which changes in accordance with a change in each of the plurality of laser light beams incident through the optical element 14, and outputs them to the information reproduction unit 16.
- the information reproducing unit 16 reproduces information recorded on the optical tape 10 based on the plurality of output signals SI from the light detecting unit 15.
- the optical tape recording / reproducing apparatus shown in FIG. 1 when information to be recorded on the optical tape 10 is recorded, the information is to be recorded from the modulation control signal transmitting section 7 in accordance with the information to be recorded.
- a plurality of changing modulation control signals SM are sent out, and they are respectively supplied to a plurality of reflection type optical modulators in the two-dimensional optical modulator 6.
- the two-dimensional light modulator 6 modulates and reflects a plurality of lasers, which are modulated according to the modulation control signal SM, respectively, in the plurality of reflective optical modulators arranged two-dimensionally on the common plane.
- An optical beam is obtained as directed to the condenser lens 5.
- the plurality of laser light beams modulated according to the modulation control signal SM obtained from the two-dimensional light modulation unit 6 are transmitted through a condenser lens 5, a quarter-wave plate 4, a polarizing beam splitter 3, and a quarter-wave plate 8. Then, the light reaches the optical system 9 and enters the optical tape 10 under the force control and tracking control by the optical system 9. As a result, information to be recorded is recorded on the optical tape 10 by a plurality of laser light beams modulated according to the modulation control signal SM on the optical tape 10 and recorded on the optical tape 10. A plurality of recording tracks on which necessary information is recorded are formed.
- a predetermined plurality of predetermined modulation control signals are transmitted from the modulation control signal transmitting unit 7.
- SMs are transmitted, and the SMs are supplied to a plurality of reflective optical modulators in the two-dimensional optical modulator 6, respectively.
- a plurality of unmodulated laser light beams obtained from the two-dimensional light modulator 6 pass through a focusing lens 5, a quarter-wave plate 4, a polarizing beam splitter 3, a quarter-wave plate 8, and an optical system 9. Reaches the optical tape 10 under the focus control and tracking control by the optical system 9, and is modulated and reflected by the optical tape 10 according to the information recorded therein. , Obtained from the optical tape 10 toward the optical system 9.
- a plurality of laser light beams modulated according to the information recorded on the optical tape 10 obtained from the optical tape 10 pass through the quarter-wave plate 8 and are reflected by the polarization beam splitter 3.
- the light beam splitter 11 splits the light into the focus / tracking detector 13 through the optical element 12 and splits the light into the light detector 15 through the optical element 14.
- an output signal SF indicating a focus state and an output signal ST indicating a tracking state for a plurality of laser light beams incident on the optical tape 10 are obtained from the focus and tracking detection unit 13. Further, from the photodetector 15, a plurality of output signals SI that change according to respective changes of the plurality of laser light beams modulated according to the information recorded on the optical tape 10 are obtained. These are supplied to the information reproducing unit 16. As a result, the information recorded on the optical tape 10 is reproduced in the information reproducing unit 16 based on the plurality of output signals S I from the light detecting unit 15.
- FIG. 6 shows an example of a two-dimensional laser diode array used in such an optical tape recording / reproducing apparatus.
- the two-dimensional laser diode array 17 is in a state in which a plurality of two-dimensionally arranged surface-emitting laser diodes 18 are brought into close proximity or mutual contact with the optical tape 19. It is dealt with. Then, when information to be recorded is recorded on the optical tape 19, each of the plurality of surface emitting laser diodes 18 emits a laser beam modulated according to the information to be recorded. Then, it is made to enter the optical tape 19. Thereby, information to be recorded on the optical tape 19 is recorded.
- one of two mutually orthogonal arrangement directions in the arrangement arrangement of the plurality of surface emitting laser diodes 18 in the two-dimensional laser diode array 17 is indicated by an arrow B.
- a number of recording tracks will be formed with a track pitch t '.
- the two-dimensional laser diode array 17 is composed of a plurality of surface emitting laser diodes 18 arranged two-dimensionally.
- the surface-emitting laser diodes 18 are arranged in such a manner that they face each other or face each other with the optical tape 19 on which information is recorded, and each of the plurality of surface-emitting laser diodes 18 emits a predetermined laser beam. Then, it is made to enter the optical tape 19.
- the laser light beam incident on the optical tape 19 is modulated and reflected in the optical tape 18 according to the information recorded thereon, and returns to each surface emitting laser diode 18, whereby
- the surface emitting laser diode 18 produces oscillation fluctuations induced by the returning light beam.
- the oscillation fluctuation generated by each of the surface emitting laser diodes 18 is detected, and the information recorded on the optical tape 19 is reproduced based on the detection output obtained thereby.
- optical tape recording / reproducing apparatus optical beam recording / reproducing apparatus using a beam forming hologram and a two-dimensional light modulating section
- a plurality of laser light beams divided and formed from one laser light beam are respectively incident on a plurality of reflective light modulators arranged two-dimensionally in the two-dimensional light modulation unit.
- the beam forming It is necessary that the positional relationship of various optical means from the hologram to the two-dimensional light modulator be strictly set and maintained.
- a plurality of two-dimensionally arranged light spots formed on the optical tape by a plurality of laser light beams incident on the optical tape are arranged in one of two orthogonal arrangement directions in the arrangement.
- the information recorded on the optical tape with a plurality of recording tracks has a phase difference between the recording tracks. Therefore, in reproducing the information recorded on the optical tape, the information reproducing section performs collective signal processing on a plurality of detection signals from the light detecting section to easily reproduce the information recorded on the optical tape. As a result, complicated signal processing is required to reproduce the information recorded on the optical tape.
- a two-dimensional laser diode array is arranged and arranged two-dimensionally.
- Each of the plurality of surface emitting laser diodes is realized only as emitting a laser light beam having an extremely small power of, for example, about 20 uW.
- Multiple surface emission in laser diode array It is required that the laser diode be brought into substantial contact with the optical tape.
- non-contact information recording or reproduction on an optical recording medium which is one of the main features of information recording or information reproduction using an optical beam, can be performed. The advantage of being less affected is lost.
- a plurality of two-dimensionally arranged surface emitting laser diodes are arranged, and one of two orthogonal arrangement directions in the arrangement is optical. Since a predetermined angle is formed with respect to the running direction of the tape, information recorded with a plurality of recording tracks on the optical tape has a phase difference between the recording tracks. Therefore, also in this case, when reproducing the information recorded on the optical tape, the information reproducing section performs a collective signal processing on a plurality of detection signals from the light detecting section to easily process the information recorded on the optical tape. Therefore, the information recorded on the optical tape must be reproduced with complicated signal processing.
- the invention described in the claims of the present application is to record information on an optical recording medium by making a plurality of light beams such as a laser beam incident on an optical recording medium such as an optical tape, or
- a plurality of light beams that transmit or reflect a plurality of light beams under the condition that non-contact information recording or reproduction on the optical recording medium can be performed.
- the difficulty in setting and maintaining the positional relationship of the optical means will be reduced, the utilization of multiple light beams will be improved, and the information recorded on the optical recording medium will be reproduced.
- an information recording device and an information recording / reproducing device which can be relatively easily performed without requiring complicated signal processing. Disclosure of the invention
- An information recording apparatus includes a recording medium drive control unit that drives an optical recording medium, and a plurality of laser diodes.
- a light source unit configured to include a one-dimensional diode array arranged linearly to obtain a plurality of light beams emitted from a plurality of laser diodes, respectively, and a plurality of laser diodes in the light source unit to record data.
- a plurality of modulation control signals based on information to be supplied are supplied, and a plurality of light beams emitted from a plurality of laser diodes are arranged according to the arrangement of the plurality of laser diodes.
- the modulated control signal transmitting section and the modulated light beams obtained from the light source section are respectively modulated so that the geometrical optical image of each of them becomes smaller than the diffraction limit. Filter by to be incident on the optical recording medium driven by the recording medium drive control unit configured to include an optical system, a forming state in which recording is performed in the information to be recorded thereto.
- the information recording device is a tape recording device.
- Medium driving control unit for driving and driving the linear optical recording medium, and a one-dimensional diode array in which a plurality of laser diodes are linearly arranged and arranged, and a plurality of laser diodes are respectively emitted.
- a plurality of modulation control signals based on information to be recorded are supplied to a light source unit for obtaining a light beam of a plurality of laser diodes and a plurality of laser diodes in the light source unit.
- a modulation control signal transmitting unit that modulates a plurality of light beams arranged according to the plurality of modulation control signals, respectively, and a plurality of modulated light beams obtained from the light source unit. They are narrowed down so that the optical images of them can be obtained substantially under the diffraction limit, and the tape-shaped optical recording that runs by being driven by the recording medium drive control unit.
- the light is incident on the body to form light spots arranged linearly in a direction at a predetermined angle to the direction of travel, and the information to be recorded is recorded on it.
- An optical system is provided.
- the information recording apparatus includes a recording medium drive control unit that drives an optical recording medium, and a plurality of laser diodes.
- a light source unit that includes a one-dimensional diode array arranged linearly and obtains a plurality of light beams emitted by a plurality of laser diodes, respectively, and a plurality of light modulation units are linearly arranged
- a one-dimensional light modulation unit arranged, a first optical system that causes a plurality of light beams from a light source unit to enter a plurality of light modulation units in the one-dimensional light modulation unit, and a plurality of one-dimensional light modulation units.
- a plurality of modulation control signals based on the information to be recorded are supplied to the light modulation means, and the plurality of light modulation means are modulated according to the plurality of modulation control signals, and the plurality of light modulation means are arranged and arranged.
- Light beams arranged in accordance with The modulation control signal sending section which is in a state where the beam is obtained from the one-dimensional optical modulator, and the plurality of modulated light beams obtained from the one-dimensional optical modulator, the geometric optical images of which exceed the diffraction limit.
- a second optical system that enters the optical recording medium driven by the recording medium drive control unit and records information to be recorded on the optical recording medium. It is configured with.
- An information recording apparatus comprising: a recording medium drive control section that drives and runs a tape-shaped optical recording medium;
- a light source unit configured to include a one-dimensional diode array in which a plurality of laser diodes are linearly arranged and arranged to obtain a plurality of light beams emitted by a plurality of laser diodes;
- a one-dimensional light modulator arranged in a matrix, a first optical system that causes a plurality of light beams from a light source to enter a plurality of light modulators in the one-dimensional light modulator, and a one-dimensional light modulator
- a plurality of modulation control signals based on information to be recorded are supplied to the plurality of light modulation means, and the plurality of light modulation means are modulated in accordance with the plurality of modulation control signals by the plurality of light modulation means, and the plurality of light modulation means Array according to array layout
- a plurality of light beams location is, the state and makes
- An information recording / reproducing apparatus comprises a recording medium drive control unit that drives an optical recording medium, and a plurality of laser diodes that are linearly arranged.
- a first light source unit configured to include a one-dimensional diode array arranged and arranged to obtain a plurality of light beams emitted by a plurality of laser diodes, and a plurality of laser diodes in the first light source unit.
- the modulated optical signals obtained from the first light source unit and the modulated control signal transmitting unit which are respectively modulated according to the above, are reduced in geometric optical image of them beyond the diffraction limit.
- a first optical system for recording information to be recorded on the optical recording medium driven by the recording medium drive control unit and a second optical system for emitting a light beam.
- a light beam from the second light source unit and a light beam from the second light source unit are incident on an optical recording medium driven by the recording medium drive control unit, and are modulated according to information recorded on the optical recording medium.
- a first optical system in which light is obtained from an optical recording medium, a light detection unit that generates an output signal that changes according to a change in an incident light beam, and a light beam from a second light source unit.
- a third optical system for inputting a light beam obtained from the incident optical recording medium to the light detection unit, and an information reproduction unit for reproducing information recorded on the optical recording medium based on an output signal obtained from the light detection unit And are configured.
- An information recording / reproducing apparatus comprises: a recording medium drive control unit that drives and runs a tape-shaped optical recording medium;
- a first light source unit configured to include a one-dimensional diode array in which laser diodes are linearly arranged and obtaining a plurality of light beams respectively emitted by the plurality of laser diodes; and a first light source unit
- a plurality of modulation control signals based on the information to be recorded are supplied to a plurality of laser diodes in the plurality of laser diodes, and a plurality of light beams emitted from a plurality of laser diodes are arranged in accordance with their arrangement.
- a modulation control signal transmitting unit that modulates each of the modulated light beams according to the plurality of modulation control signals, and a plurality of modulated light beams obtained from the first light source unit.
- the tape is narrowed down so that it can be obtained under the diffraction limit, and a tape-shaped optical recording medium that is driven and driven by the recording medium drive control unit is linearly formed at a predetermined angle to the running direction.
- a first optical system that enters a light spot formed as an array of light spots and records information to be recorded thereon, a second light source unit that emits a light beam, and a second light source unit that emits a light beam.
- Light source section A light beam from the optical disk is incident on a tape-shaped optical recording medium driven by a recording medium drive control unit, and a light beam modulated according to information recorded thereon is obtained from the tape-shaped optical recording medium.
- a second optical system a light detector that generates an output signal that changes in accordance with a change in the incident light beam, and a tape-shaped optical recording medium into which the light beam from the second light source enters.
- a third optical system that causes the obtained light beam to enter the light detection unit; and an information reproduction unit that reproduces information recorded on the tape-shaped optical recording medium based on an output signal obtained from the light detection unit. Be composed.
- the information recording / reproducing apparatus comprises a recording medium drive control section for driving an optical recording medium, and a plurality of laser diodes arranged linearly.
- a first light source unit configured to include a one-dimensional diode array arranged and arranged to obtain a plurality of light beams respectively emitted by a plurality of laser diodes, and a plurality of light modulating units arranged in a linear manner
- a plurality of modulation control signals based on information to be recorded are supplied to the plurality of light modulation means, and the plurality of light modulation means are modulated in accordance with the plurality of modulation control signals to provide a plurality of light modulation means.
- Multiple arrays arranged according to the array arrangement A modulation control signal transmitting section that makes the beam be obtained from the one-dimensional light modulation section, and a plurality of modulated light beams obtained from the one-dimensional light modulation section, when the geometrical optical images of those beams exceed the diffraction limit.
- a second light source unit that emits light, and a light beam from the second light source unit is incident on an optical recording medium driven by a recording medium drive control unit, and modulated according to information recorded on the optical recording medium.
- An information recording / reproducing apparatus comprises: a recording medium drive control unit that drives and runs a tape-shaped optical recording medium;
- a first light source unit configured to include a one-dimensional diode array in which a number of laser diodes are linearly arranged, and to obtain a plurality of light beams respectively emitted by a plurality of laser diodes;
- a one-dimensional light modulating unit in which light modulating means are linearly arranged and a plurality of light beams from the first light source unit are incident on the plurality of light modulating means in the one-dimensional light modulating unit;
- a plurality of modulation control signals based on information to be recorded are supplied to the first optical system and a plurality of light modulation units of the one-dimensional light modulation unit, and the plurality of light modulation units respond to the plurality of modulation control signals. And a plurality of light beams arranged in accordance with the arrangement of the plurality of light modulating means.
- the modulation control signal sending section in which the beam is obtained from the one-dimensional light modulation section, and the multiple modulated light beams obtained from the one-dimensional light modulation section, the geometric optical images of which are substantially diffraction-limited.
- the tape is narrowed down so that it can be obtained under the condition, and the tape-shaped optical recording medium driven and driven by the recording medium drive control unit is linearly arranged in a direction at a predetermined angle to the running direction.
- a second optical system that enters the light spot to form an arranged light spot and records information to be recorded thereon, a second light source unit that emits a light beam, and a second light source
- the optical beam from the recording unit is made incident on the tape-shaped optical recording medium driven by the recording medium drive control unit, and the light beam modulated according to the information recorded on it is obtained from the tape-shaped optical recording medium.
- Third light System a photodetector that generates an output signal that changes according to the change of the incident light beam, and a light beam that is obtained from a tape-shaped optical recording medium on which the light beam from the second light source enters.
- a fourth optical system for making the light incident on the optical recording medium, and an information reproducing unit for reproducing information recorded on the tape-shaped optical recording medium based on an output signal obtained from the light detecting unit.
- An information recording / reproducing apparatus comprises: a recording medium drive control unit that drives an optical recording medium; and a plurality of laser diodes.
- a light source unit configured to include a one-dimensional diode array in which a plurality of laser diodes are linearly arranged and obtaining a plurality of beams emitted from a plurality of laser diodes, and a plurality of laser diodes in the light source unit.
- a modulation control signal transmitting unit that modulates or does not modulate each according to the modulation control signal, and a polarization beam splitter into which a plurality of light beams from the light source unit enter.
- the multiple optical beams from the light source that have passed through the polarizing beam splitter or reflected by the polarizing beam splitter have their geometrical optical images reduced beyond the diffraction limit.
- a first optical system in which the light beam is obtained from the optical recording medium, a light detection unit that generates an output signal that changes according to a change in the incident light beam, and a recording medium driven by the drive control unit A second method in which a plurality of light beams obtained from an optical recording medium and reflected by a polarizing beam splitter or transmitted through a polarizing beam splitter is incident on a photodetector. Configured with the academic system, an information reproducing unit that reproduces information recorded on an optical recording medium on the basis of an output signal obtained from the optical detecting unit.
- An information recording / reproducing apparatus comprising: a recording medium drive control unit that drives and runs a tape-shaped optical recording medium; It is configured to include a one-dimensional diode array in which a plurality of laser diodes are linearly arranged to obtain a plurality of optical beams emitted from the plurality of laser diodes.
- a plurality of modulation control signals based on information to be recorded or a predetermined modulation control signal are supplied to a plurality of laser diodes in the light source section and a plurality of laser diodes in the light source section, respectively, so that a plurality of laser diodes are respectively provided.
- a modulation control signal transmitting section for emitting a plurality of optical beams arranged according to the arrangement of the light beams to be modulated or not modulated according to a modulation control signal, and a plurality of light beams from a light source section.
- the geometric optical image of the polarization beam splitter where the light beam is incident and the multiple light beams from the light source unit that have passed through the polarization beam splitter or reflected by the polarization beam splitter are substantially the same.
- the tape is narrowed down so that it can be obtained under the diffraction limit, and the running direction of the tape-shaped optical recording medium that is driven by the recording medium drive control unit is Light spots that are arranged linearly in a direction at a predetermined angle with respect to the light spot to form the light spot, and the information to be recorded on it is recorded, or according to the information recorded on it.
- Optical system in which a plurality of modulated light beams are obtained from a tape-shaped optical recording medium, a light detection unit that generates an output signal that changes in accordance with a change in an incident light beam, and a recording medium
- a second method in which a plurality of light beams obtained from the tape-shaped optical recording medium driven by the drive control unit and reflected by the polarization beam splitter or transmitted through the polarization beam splitter is incident on the light detection unit.
- an information reproducing unit that reproduces information recorded on the tape-shaped optical recording medium based on an output signal obtained from the light detecting unit.
- An information recording / reproducing apparatus comprises: a recording medium drive control unit that drives an optical recording medium; and a plurality of laser diodes. And a light source unit for obtaining a plurality of light beams emitted by a plurality of laser diodes, respectively, and a plurality of light modulating means arranged linearly.
- a plurality of modulation control signals based on information to be recorded or a preset modulation control signal are supplied to the light modulation means, and the plurality of light modulation means are respectively modulated by the plurality of light modulation means in accordance with the modulation control signal.
- a modulation control signal transmitting unit for providing a state in which a plurality of light beams arranged according to the arrangement of the plurality of optical modulation means are obtained from the one-dimensional light modulation unit; and a one-dimensional light modulation unit. And a plurality of light beams from the one-dimensional light modulator that are transmitted through the polarization beam splitter or reflected at the polarization beam splitter.
- a second optical system in which a plurality of light beams modulated according to information recorded thereon are obtained from an optical recording medium, and an output that changes according to a change in an incident light beam.
- a signal is generated from a photodetector that generates a signal and an optical recording medium that is driven by a recording medium drive controller, and is reflected by a polarizing beam splitter or A third optical system that causes a plurality of light beams transmitted through the polarization beam splitter to enter a light detection unit, and information that reproduces information recorded on an optical recording medium based on an output signal obtained from the light detection unit And a reproducing unit.
- the information recording / reproducing apparatus is a recording medium drive control unit that drives and runs a tape-shaped optical recording medium.
- a light source unit configured to include a one-dimensional diode array in which a plurality of laser diodes are linearly arranged to obtain a plurality of light beams emitted from the plurality of laser diodes, respectively, and a plurality of light modulation units.
- the polarization beam splitter into which a plurality of light beams from the original light modulation unit are incident, and the plurality of light beams from the one-dimensional light modulation unit transmitted through the polarization beam splitter or reflected by the polarization beam splitter, A state in which the geometrical optical image of is obtained substantially under the diffraction limit-The tape-shaped optical recording medium that is driven and driven by the recording medium drive control unit Light spots that are arranged in a linear array in the direction of the angle of the incident light, and the information to be recorded is recorded on it.
- a second optical system in which a plurality of light beams modulated according to information recorded in the optical disk are obtained from a tape-shaped optical recording medium, and an output signal that changes according to a change in an incident light beam.
- a plurality of light beams obtained from the generated light detection unit and the tape-shaped optical recording medium driven by the recording medium drive control unit and reflected by the polarization beam splitter or transmitted through the polarization beam splitter are A third optical system for entering the light detecting unit; and an information reproducing unit for reproducing information recorded on the tape-shaped optical recording medium based on an output signal obtained from the light detecting unit.
- a plurality of laser diodes are linearly arranged and arranged.
- a plurality of laser diodes are modulated in accordance with a modulation control signal from a light source unit to which a plurality of laser diodes are supplied with a plurality of modulation control signals from a modulation control signal transmission unit.
- a plurality of light beams arranged in accordance with the arrangement of the laser diodes can be obtained.
- the plurality of light beams are narrowed down by the optical system to a state where the geometrical optical image of the plurality of light beams exceeds the diffraction limit and is reduced to a small size, and is applied to the optical recording medium driven by the recording medium drive control unit. Incident on the optical recording medium, so that information to be recorded is coupled to each of a plurality of light beams incident on the optical recording medium. It is recorded with a corresponding plurality of recording tracks.
- a light source unit having a plurality of laser diodes arranged linearly is used, and a plurality of light beams modulated in accordance with a modulation control signal based on information to be recorded are formed. It is formed with an arrangement corresponding to the arrangement of a plurality of laser diodes, that is, an arrangement arranged substantially in a common plane, and they are narrowed down to a state where the geometric optical image exceeds the diffraction limit and is small. Therefore, it is assumed that the light is incident on the optical recording medium driven by the recording medium drive control unit. Therefore, it is necessary to form a recording track with a minimum necessary guard band on the optical recording medium to record information. In this state, non-contact information recording on an optical recording medium can be performed. In addition, the setting and the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams can be performed. Together so that the difficulty is reduced in the lifting, improved utilization of the plurality of light beams is achieved.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane
- the light spots are linearly arranged and arranged on the optical recording medium, so that the reproduction of the information recorded on the optical recording medium is complicated. It can be performed relatively easily without requiring any significant signal processing.
- the information recording apparatus is configured to include a one-dimensional diode array in which a plurality of laser diodes are linearly arranged.
- a plurality of laser diodes are supplied with a plurality of modulation control signals from a modulation control signal transmitting unit, and are modulated according to the modulation control signals, and are arranged in accordance with the arrangement of a plurality of laser diodes. Resulting in multiple light beams. Then, the plurality of light beams are narrowed down by the optical system so that a geometrical optical image of them is obtained substantially under the diffraction limit, and the plurality of light beams are driven by the recording medium drive control unit.
- the tape-shaped optical recording medium travels in a direction in which the optical spots are arranged in a direction at a predetermined angle with respect to the traveling direction to form optical spots. Then, the information to be recorded is recorded with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the tape-shaped optical recording medium.
- a light source unit having a plurality of laser diodes arranged in a line is used, and a plurality of light beams modulated in accordance with a modulation control signal based on information to be recorded are formed.
- a modulation control signal based on information to be recorded are formed in an arrangement corresponding to the arrangement of the laser diodes, that is, arranged substantially in the common plane, so that they are in a state where a geometric optical image can be obtained substantially under the diffraction limit.
- the aperture is narrowed down as much as possible, and the optical spots are arranged so as to form an optical spot arranged at a predetermined angle to the running direction on the running tape-shaped optical recording medium.
- Non-contact information recording on a single optical recording medium can be performed, and the difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of optical beams is reduced. As a result, the utilization of multiple light beams can be improved.
- a plurality of information to be recorded on the tape-shaped optical recording medium are modulated in accordance with a modulation control signal based on the information to be recorded, and are arranged substantially in a common plane.
- the light beam is incident on the tape-shaped optical recording medium, the light spots are formed on the tape-shaped optical recording medium so that the light spots are arranged linearly on the tape-shaped optical recording medium.
- the reproduced information can be reproduced relatively easily without the need for complicated signal processing.
- a one-dimensional die in which a plurality of laser diodes are linearly arranged. From a one-dimensional light modulating section, in which a plurality of light modulating means are linearly arranged, into which a plurality of light beams from a light source section including a photodiode array are incident, are transmitted to a plurality of light modulating means. Then, a plurality of light beams are modulated according to the modulation control signal based on the information to be recorded from the modulation control signal transmitting unit and arranged in accordance with the arrangement of the plurality of light modulating means.
- the plurality of light beams are narrowed down by the second optical system to a state where the geometrical optical images of the plurality of light beams exceed the diffraction limit and are reduced, and are driven by the recording medium drive control unit.
- the information to be recorded is recorded on the optical recording medium with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the optical recording medium. Is done.
- the light source unit having a plurality of laser diodes arranged linearly and the one-dimensional light modulating unit having a plurality of light modulating units arranged linearly are used for recording.
- a plurality of light beams modulated in accordance with a modulation control signal based on information to be formed are formed in an arrangement according to an arrangement of a plurality of light modulating means, that is, an arrangement arranged substantially in a common plane.
- they are narrowed down to a state in which the geometric optical image exceeds the diffraction limit and is reduced, and are incident on the optical recording medium driven by the recording medium drive control unit.
- a non-contact information recording on an optical recording medium can be performed in a state where information can be recorded by forming a recording track with a minimum necessary band, and a plurality of light beams can be transmitted. Together with so that the difficulty is reduced in the setting and maintaining the positional relationship of the plurality of optical means for reflecting, improved utilization of the plurality of light beams is achieved.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane
- the light spots are formed on the optical recording medium in a linearly arranged manner. Reproduction of the information can be performed relatively easily without requiring complicated signal processing.
- a primary device comprising a plurality of laser diodes arranged linearly. From a one-dimensional light modulation unit, in which a plurality of light modulation units are arranged in a linear array, into which a plurality of light beams from a light source unit including an original diode array are incident, a plurality of light modulation units are provided. In this step, a plurality of optical beams are modulated according to a modulation control signal based on information to be recorded from the modulation control signal transmitting unit and arranged in accordance with the arrangement of the plurality of optical modulation means.
- the plurality of light beams are narrowed down by the second optical system so that a geometrical optical image of the plurality of light beams can be obtained substantially under the diffraction limit, and the recording medium drive control unit
- the tape-shaped optical recording medium which is driven and driven by the optical disc, enters the optical recording medium so as to form optical spots arranged in a direction at a predetermined angle with respect to the traveling direction.
- Information to be recorded is recorded on the optical recording medium with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the tape-shaped optical recording medium.
- the light source unit having a plurality of laser diodes arranged linearly and the one-dimensional light modulating unit having a plurality of light modulating units arranged linearly are used to record data.
- a plurality of light beams modulated in accordance with a modulation control signal based on information to be formed are formed in an arrangement according to an arrangement of a plurality of light modulating means, that is, an arrangement arranged substantially in a common plane. They are narrowed down so that a geometric optical image can be obtained substantially under the diffraction limit, and the running tape-shaped optical recording medium is oriented in a direction at a predetermined angle to the running direction.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- the light beam is incident on the tape-shaped optical recording medium, the light beam is formed on the tape-shaped optical recording medium so that the optical spots are arranged linearly on the tape-shaped optical recording medium.
- the reproduction of the information obtained can be done relatively easily without the need for complicated signal processing.
- a one-dimensional diode array in which a plurality of laser diodes are linearly arranged.
- a modulation control signal transmission unit for a plurality of laser diodes.
- a plurality of light beams that are modulated in accordance with the modulation control signal and arranged in accordance with the arrangement of the plurality of laser diodes are obtained from the first light source unit to which the plurality of modulation control signals are supplied. .
- the plurality of light beams are narrowed down by the first optical system to a state where the geometrical optical image of the plurality of light beams exceeds the diffraction limit and is reduced, and is driven by the recording medium drive control unit.
- the information to be recorded is recorded on the optical recording medium with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the optical recording medium. .
- a light beam from the second light source unit enters the optical recording medium driven by the recording medium drive control unit, is modulated according to information recorded on the optical recording medium, and is guided to the light detection unit. It is.
- an output signal that changes according to a change in the light beam modulated according to the information recorded on the optical recording medium is obtained from the light detection unit, and the information reproduction unit outputs the output signal from the light detection unit.
- the information recorded on the optical recording medium is reproduced based on the information.
- the first light source unit having the plurality of laser diodes arranged linearly is used, and the plurality of light beams modulated according to the modulation control signal based on the information to be recorded are used.
- the beams are formed in an arrangement corresponding to the arrangement of a plurality of laser diodes, that is, in an arrangement arranged substantially in a common plane, and the geometric optical image is reduced to a size smaller than the diffraction limit. It is assumed that the light enters the optical recording medium that is driven by the recording medium drive control unit, so that information is recorded by forming a recording track with a minimum necessary guard band on the optical recording medium.
- non-contact information recording on an optical recording medium can be performed, and the setting of the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams.
- difficulties in maintenance and maintenance will be reduced, and the utilization of multiple light beams will be improved.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane Is incident on the optical recording medium to form optical spots arranged linearly on the optical recording medium, so that, for example, the light beam from the second light source unit is used for recording.
- the reproduction of the information recorded on the optical recording medium which is performed assuming that it is incident on the optical recording medium driven by the medium drive control unit, does not require complicated signal processing in the information reproduction unit. It can be done relatively easily.
- a one-dimensional diode in which a plurality of laser diodes are linearly arranged.
- a first light source unit configured to include an array and supplied with a plurality of modulation control signals from a modulation control signal transmission unit to a plurality of laser diodes;
- a plurality of light beams arranged in accordance with the arrangement of the cards are obtained.
- the plurality of light beams are then narrowed down by an optical system so that a geometric optical image of them is obtained substantially under the diffraction limit.
- the tape-shaped optical recording medium which is driven by the recording medium drive control unit and travels, enters the tape-shaped optical recording medium so as to form optical spots arranged in a direction at a predetermined angle with respect to the traveling direction. Then, information to be recorded is recorded on the tape-shaped optical recording medium with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the tape-shaped optical recording medium.
- the light beam from the second light source unit enters the tape-shaped optical recording medium driven by the recording medium drive control unit, and is modulated according to the information recorded on the tape-shaped optical recording medium, The light is guided to the light detection unit.
- an output signal that changes according to a change in the light beam modulated according to the information recorded on the tape-shaped optical recording medium is obtained from the light detection unit, and the information reproduction unit outputs the signal from the light detection unit.
- the information recorded on the tape-shaped optical recording medium is reproduced based on the output signal.
- the first light source unit having a plurality of laser diodes arranged in a linear manner is used, and a plurality of light beams modulated according to a modulation control signal based on information to be recorded are used.
- a plurality of light beams modulated according to a modulation control signal based on information to be recorded are used.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- the light beam is incident on the tape-shaped optical recording medium to form a linearly arranged light spot on the tape-shaped optical recording medium, the light beam is emitted.
- the light beam from the light source section is assumed to be incident on the tape-shaped optical recording medium driven by the recording medium drive control section.
- the reproduction of the information recorded on the tape-shaped optical recording medium is performed by the information reproducing section. In this case, it can be performed relatively easily without requiring complicated signal processing.
- a one-dimensional diode in which a plurality of laser diodes are linearly arranged is provided. From a one-dimensional light modulation section in which a plurality of light beams from a first light source section including an array are incident and a plurality of light modulation means are linearly arranged, a plurality of light modulation means are provided. It responds to the modulation control signal based on the information to be recorded from the modulation control signal transmitter. And a plurality of light beams arranged in accordance with the arrangement of the plurality of light modulating means.
- the optical recording medium has a plurality of recording tracks corresponding to a plurality of optical beams each of which information to be recorded is incident on the optical recording medium. Recorded.
- a light beam from the second light source unit enters the optical recording medium driven by the recording medium drive control unit, is modulated according to information recorded on the optical recording medium, and is guided to the light detection unit. It is.
- an output signal that changes according to a change in the light beam modulated according to the information recorded on the optical recording medium is obtained from the light detection unit, and the information reproduction unit outputs the output signal from the light detection unit.
- the information recorded on the optical recording medium is reproduced based on the information.
- the first light source unit having a plurality of laser diodes arranged linearly and the one-dimensional light modulation unit having a plurality of light modulating units arranged linearly are used.
- a plurality of light beams modulated in accordance with a modulation control signal based on information to be recorded are arranged in accordance with an arrangement of a plurality of light modulating means, that is, are substantially placed in a common plane. They are formed in an array arrangement, and they are narrowed down to a state where the geometrical optical image is smaller than the diffraction limit and is incident on the optical recording medium driven by the recording medium drive control unit.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane Is incident on the optical recording medium to form optical spots arranged linearly on the optical recording medium, so that, for example, the light beam from the second light source unit is used for recording.
- the reproduction of the information recorded on the optical recording medium which is performed assuming that it is incident on the optical recording medium driven by the medium drive control unit, does not require complicated signal processing in the information reproduction unit. It can be done relatively easily.
- a one-dimensional diode in which a plurality of laser diodes are linearly arranged.
- a one-dimensional light modulation section in which a plurality of light beams from a first light source section including an array are incident and a plurality of light modulation means are linearly arranged, a plurality of light modulation means are provided.
- a plurality of optical beams are modulated in accordance with a modulation control signal based on information to be recorded from the modulation control signal transmitting unit and arranged in accordance with the arrangement of the plurality of light modulating means. Then, the plurality of light beams are connected to them by the second optical system.
- a geometric optical image is narrowed down to a state where it can be obtained substantially under the diffraction limit, and the tape-shaped optical recording medium which is driven and driven by the recording medium drive control unit is moved in the traveling direction. It is assumed that the light is incident to form optical spots arranged at a predetermined angle with respect to the optical spot, whereby the information to be recorded on the tape-shaped optical recording medium is a tape-shaped optical recording medium. Recording is performed with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the medium.
- a light beam from the second light source unit enters the tape-shaped optical recording medium driven by the recording medium drive control unit, and is modulated according to the information recorded on the tape-shaped optical recording medium. It is led to the detection unit. As a result, an output signal that changes according to a change in the light beam modulated according to the information recorded on the tape-shaped optical recording medium is obtained from the light detection unit, and the information reproduction unit outputs the signal from the light detection unit. The information recorded on the tape-shaped optical recording medium is reproduced based on the output signal.
- the first light source unit having a plurality of laser diodes arranged linearly and the one-dimensional light modulation unit having a plurality of light modulating units arranged linearly are used.
- a plurality of light beams modulated in accordance with a modulation control signal based on information to be recorded are arranged in accordance with the arrangement of a plurality of light modulating means, that is, arranged in a substantially common plane. They are formed in a row arrangement and they are narrowed down so that the geometrical optical image can be obtained substantially under the diffraction limit.
- a recording track with a minimum necessary guard band is formed on a tape-shaped optical recording medium, and information is formed. Can be recorded In this way, non-contact information recording on a tape-shaped optical recording medium can be performed, and the difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams is reduced. And the utilization of multiple light beams is improved.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- the second light source unit is used.
- the light beam from the optical disc is assumed to be incident on a tape-shaped optical recording medium driven by the recording medium drive control section.
- the information recorded on the tape-shaped optical recording medium is reproduced by the information reproducing section. It can be performed relatively easily without complicated signal processing.
- a plurality of modulation control signals based on information to be recorded are supplied from a modulation control signal transmission unit to a light source unit including a one-dimensional diode array in which are linearly arranged. Each is modulated according to the modulation control signal, and a plurality of light beams arranged and arranged according to the arrangement and arrangement of the plurality of laser diodes are obtained. Then, the plurality of light beams are narrowed down by the first optical system to a state where the geometrical optical image of the plurality of light beams exceeds the diffraction limit and is reduced, and is driven by the recording medium drive control unit.
- the information to be recorded is recorded on the optical recording medium with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the optical recording medium. .
- a predetermined modulation control signal is supplied from the modulation control signal transmitting unit to the light source unit, and each is modulated from the light source unit.
- a plurality of light beams arranged in accordance with the arrangement of a plurality of laser diodes can be obtained.
- the plurality of light beams are narrowed down by the optical system to a state where the geometrical optical image of the plurality of light beams exceeds the diffraction limit and is reduced, and is driven by the recording medium drive control unit.
- a plurality of light beams modulated according to the information recorded on the optical recording medium are obtained from the optical recording medium, and guided to the photodetector.
- an output signal that changes according to the change of the light beam modulated according to the information recorded on the optical recording medium is obtained from the light detection unit, and the output signal is changed from the light detection unit to the information reproduction unit.
- the information recorded on the optical recording medium is reproduced based on the output signal of.
- the light source unit including the one-dimensional diode array in which a plurality of laser diodes are linearly arranged is used, and the light source unit performs modulation control based on information to be recorded.
- a plurality of light beams modulated according to a signal or a plurality of light beams not to be modulated are arranged in accordance with an arrangement of a plurality of laser diodes, that is, a substantially common plane.
- the recording track having a minimum necessary guard band can be formed on the optical recording medium to record information.
- Information recording can be performed, and the difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams can be reduced, and a plurality of light beams can be recorded. The utilization rate of the system will be improved.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane Is incident on the optical recording medium, thereby forming optical spots arranged linearly on the optical recording medium, so that the light spots are not subjected to modulation and are substantially in a common plane.
- the reproduction of the information recorded on the optical recording medium which is assumed to be incident on the optical recording medium driven by the control unit, can be performed without the need for complicated signal processing in the information reproduction unit. It can be done easily.
- the tape-shaped optical recording medium is used as the recording medium, Recording of information on the optical recording medium and reproduction of information from the tape-shaped optical recording medium are performed by using a common light source unit and a plurality of optical means.
- a modulation control signal is applied to a light source unit including a one-dimensional diode array in which a plurality of laser diodes are linearly arranged.
- a plurality of modulation control signals based on information to be recorded are supplied from a transmission unit, and a plurality of modulation control signals are modulated from a light source unit, each of which is modulated according to a modulation control signal, and arranged in accordance with an arrangement arrangement of a plurality of laser diodes. Is obtained. Then, the plurality of light beams are narrowed down by the first optical system so that a geometric optical image of them is obtained substantially under the diffraction limit.
- the tape-shaped optical recording medium which is driven and driven by the recording medium, enters the optical recording medium so as to form optical spots arranged in a direction at a predetermined angle with respect to the traveling direction.
- Information to be recorded is recorded on the tape-shaped optical recording medium with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the tape-shaped optical recording medium.
- a modulation control signal set in advance is supplied from the modulation control signal transmitting unit to the light source unit, and each is not modulated by the light source unit.
- a plurality of light beams arranged in accordance with the arrangement of the plurality of laser diodes can be obtained.
- the plurality of light beams are narrowed down by the first optical system so that a geometric optical image of the plurality of light beams is obtained substantially under the diffraction limit, and the recording medium drive control unit
- the tape-shaped optical recording medium, which is driven and travels, is to be incident on the tape-shaped optical recording medium so as to form optical spots arranged in a direction at a predetermined angle to the travel direction.
- a plurality of light beams modulated according to the information recorded on the recording medium are obtained from the tape-shaped optical recording medium, and are guided to the light detection unit.
- an output signal that changes according to the change of the light beam modulated according to the information recorded on the tape-shaped optical recording medium is obtained from the light detection unit, and the output from the light detection unit is obtained at the information reproduction unit.
- the information recorded on the tape-shaped optical recording medium is reproduced based on the signal.
- a light source unit including a one-dimensional diode array in which a plurality of laser diodes are linearly arranged is used, and a modulation control signal based on information to be recorded is transmitted from the light source unit.
- a plurality of light beams that are modulated according to the light beam or a plurality of light beams that are not subjected to the modulation are arranged in accordance with the arrangement of the plurality of laser diodes, that is, substantially in a common plane.
- a tape-shaped optical recording medium driven and driven by a recording medium drive control unit so as to form optical spots arranged in a direction at a predetermined angle with respect to the running direction. Therefore, non-contact information recording on a tape-shaped optical recording medium can be performed in a state where information can be recorded by forming a recording track with a minimum necessary guard band on the tape-shaped optical recording medium.
- the difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams is reduced, and the utilization rate of the plurality of light beams is reduced. Improvement is achieved.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- the light beam is incident on the tape-shaped optical recording medium, the light beam is formed on the tape-shaped optical recording medium so that the light spots are arranged linearly on the tape-shaped optical recording medium.
- a plurality of light beams which are not received and are arranged and arranged substantially in a common plane are incident on a tape-shaped optical recording medium which is driven and traveled by a recording medium drive control unit.
- the reproduction of the information recorded on the tape-shaped optical recording medium can be performed relatively easily without the need for complicated signal processing in the information reproducing unit.
- recording of information on an optical recording medium and reproduction from the optical recording medium are also performed.
- Reproduction of information is performed using a common light source unit and a plurality of optical means.
- a plurality of light beams from a light source unit including a one-dimensional diode array arranged in a plurality of laser diodes are arranged.
- a plurality of light modulation means in a one-dimensional light modulation unit in which a plurality of light modulation means are linearly arranged are supplied with a plurality of modulation control signals based on information to be recorded from a modulation control signal transmission unit; From the one-dimensional light modulator, a plurality of optical beams are obtained, each of which is modulated according to the modulation control signal and arranged in accordance with the arrangement of the plurality of light modulating means. Then, the plurality of light beams are narrowed down by the second optical system to a state where the geometrical optical image of the plurality of light beams exceeds the diffraction limit and is reduced, and is driven by the recording medium drive control unit.
- the information to be recorded is recorded on the optical recording medium by a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the optical recording medium.
- a plurality of light modulating units in the one-dimensional light modulating unit on which a plurality of light beams from the light source unit are incident are set in advance from the modulation control signal transmitting unit.
- a modulation control signal is supplied, and a plurality of light beams arranged in accordance with the arrangement of the plurality of light modulating means can be obtained from the one-dimensional light modulating unit without being modulated.
- the plurality of light beams are narrowed down by the second optical system to a state where the geometrical optical image of the plurality of light beams exceeds the diffraction limit and is reduced to a small size.
- the light beam is incident on the optical recording medium driven by the drive control unit, whereby a plurality of light beams modulated according to the information recorded on the optical recording medium are obtained from the optical recording medium, and It is led to the detection unit.
- an output signal that changes according to a change in the light beam modulated according to the information recorded on the optical recording medium is obtained from the light detection unit, and the information reproduction unit outputs the output signal from the light detection unit.
- the information recorded on the optical recording medium is reproduced based on the information.
- a light source unit including a one-dimensional diode array in which a plurality of laser diodes are linearly arranged and a plurality of light modulating means are linearly arranged in one-dimensional light modulation.
- the optical modulator is formed with an array arrangement corresponding to the array arrangement of the plurality of light modulating means, that is, an array arrangement which is practically arranged in a common plane.
- the optical image is narrowed down to a state where the optical image exceeds the diffraction limit and becomes small, and enters the optical recording medium driven by the recording medium drive control unit.
- the optical image is narrowed down to a state where the optical image exceeds the diffraction limit and becomes small, and enters the optical recording medium driven by the recording medium drive control unit.
- non-contact information recording on an optical recording medium can be performed, and a plurality of optical beams are transmitted or reflected.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane Is incident on the optical recording medium, thereby forming optical spots arranged linearly on the optical recording medium, so that the light spots are not subjected to modulation and are substantially in a common plane.
- the reproduction of information recorded on the optical recording medium which is performed by assuming that a plurality of light beams to be arranged and arranged on the optical recording medium driven by the recording medium drive control unit is performed,
- the information reproducing unit can be relatively easily performed without requiring complicated signal processing.
- the tape-based optical recording medium is used as a recording medium,
- the recording of information on the optical recording medium and the reproduction of information from the optical recording medium are performed using a common light source unit and a plurality of optical means.
- a plurality of light beams from a light source unit including a one-dimensional diode array in which a plurality of laser diodes are linearly arranged are arranged.
- a plurality of modulation control signals based on information to be recorded from a modulation control signal transmission unit to a plurality of light modulation units in a one-dimensional light modulation unit in which a plurality of light modulation units are linearly arranged and arranged.
- a plurality of light beams modulated in accordance with the control signal and arranged in accordance with the arrangement of the plurality of light modulating means are obtained.
- the plurality of light beams are narrowed down by the second optical system so that a geometrical optical image thereof can be obtained substantially under the diffraction limit, and the recording medium drive control unit
- the tape-shaped optical recording medium which is driven and travels, is preferably incident on the tape-shaped optical recording medium so as to form optical spots arranged at a predetermined angle with respect to the traveling direction.
- Information to be recorded is recorded on the recording medium with a plurality of recording tracks respectively corresponding to a plurality of light beams incident on the tape-shaped optical recording medium.
- a plurality of light modulating units in a one-dimensional light modulating unit where a plurality of light beams from a light source unit are incident are transmitted from a modulation control signal transmitting unit.
- a preset modulation control signal is supplied, and a plurality of light beams arranged in accordance with the arrangement of the plurality of light modulating means are obtained from the one-dimensional light modulation unit without being modulated.
- the plurality of light beams are narrowed down by an optical system so that geometric optical images corresponding to the plurality of light beams can be obtained substantially under a diffraction limit, and the recording medium drive control unit
- the tape-shaped optical recording medium which is driven and travels, is incident on the tape-shaped optical recording medium so as to form optical spots arranged in a direction at a predetermined angle with respect to the traveling direction.
- a plurality of light beams modulated in accordance with the information recorded on the optical recording medium are obtained from the tape-shaped optical recording medium, and guided to the photodetector.
- an output signal that changes according to a change in the light beam modulated according to the information recorded on the tape-shaped optical recording medium is obtained from the light detection unit, and the information reproduction unit outputs the signal from the light detection unit.
- the information recorded on the tape-shaped optical recording medium is reproduced based on the output signal.
- a light source unit including a one-dimensional diode array in which a plurality of laser diodes are linearly arranged and a one-dimensional light modulation unit in which a plurality of light modulation means are linearly arranged.
- a plurality of light beams modulated according to a modulation control signal based on information to be recorded, or a plurality of light beams supposed to be unmodulated from the one-dimensional light modulating unit It is formed with an array arrangement corresponding to the array arrangement of the plurality of light modulating means, that is, an array arrangement which will be arranged in a substantially common plane, and the geometrical optical image is substantially diffraction-limited.
- the tape-shaped optical recording medium must be capable of recording information by forming a recording track with a minimum necessary guard band.
- Contactless information recording can be performed, and the difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams can be reduced. The beam utilization is improved.
- the recording of the information to be recorded on the tape-shaped optical recording medium should be recorded.
- a plurality of light beams, which are modulated according to a modulation control signal based on the optical information and are arranged and arranged substantially in a common plane, are incident on the tape-shaped optical recording medium. Since the light spots are arranged linearly in a plane, a plurality of light beams which are not to be modulated and are arranged substantially in a common plane are formed.
- Reproduction of information recorded on the tape-shaped optical recording medium which is assumed to be incident on the tape-shaped optical recording medium that is driven and traveled by the recording medium drive control unit, is performed by the information reproduction unit, which involves complicated signal processing. It can be done relatively easily without the need for BRIEF DESCRIPTION OF THE FIGURES
- FIG. 1 is a block connection diagram showing a main part of an example of a conventionally proposed optical tape recording / reproducing apparatus.
- FIG. 2 is a conceptual diagram for explaining a two-dimensional light modulation unit in the example of the conventionally proposed optical tape recording / reproducing apparatus shown in FIG.
- FIG. 3 is a conceptual diagram serving to explain a two-dimensional light modulator in the example of the conventionally proposed optical tape recording / reproducing apparatus shown in FIG.
- FIG. 4 is a conceptual diagram serving to explain a two-dimensional optical modulator in the example of the conventionally proposed optical tape recording / reproducing apparatus shown in FIG.
- FIG. 5 is a conceptual diagram for explaining information recording on an optical tape by the example of the conventionally proposed optical tape recording / reproducing apparatus shown in FIG.
- FIG. 6 is a conceptual diagram showing a two-dimensional laser diode array in another example of a conventionally proposed optical tape recording / reproducing apparatus.
- FIG. 7 is a conceptual diagram for explaining information recording on an optical tape by a conventionally proposed optical tape recording / reproducing apparatus using the two-dimensional laser diode array shown in FIG.
- FIG. 8 is a conceptual diagram for explaining information recording on an optical tape by a conventionally proposed optical tape recording / reproducing apparatus using the two-dimensional laser diode array shown in FIG.
- FIG. 9 is a block connection diagram showing a main part of an example of the information recording device according to any one of the first to fourth aspects of the present invention.
- FIG. 10 is a diagram showing a configuration example of a one-dimensional diode array in the example of the information recording device shown in FIG.
- FIG. 11 is a conceptual diagram explaining an optical system in the example of the information recording apparatus shown in FIG.
- FIG. 12 is a conceptual diagram provided for explaining information recording on an optical tape by the example of the information recording apparatus shown in FIG.
- FIG. 13 is a conceptual diagram explaining the optical system in the example of the information recording apparatus shown in FIG.
- FIG. 14 is a conceptual diagram provided for explaining information recording on an optical tape by the example of the information recording apparatus shown in FIG.
- FIG. 15 is a conceptual diagram explaining the optical system in the example of the information recording apparatus shown in FIG.
- FIG. 16 is a conceptual diagram provided for explaining information recording on an optical tape by the example of the information recording apparatus shown in FIG.
- FIG. 17 is a conceptual diagram explaining the optical system in the example of the information recording apparatus shown in FIG.
- FIG. 18 is a conceptual diagram provided for explaining information recording on an optical tape by the example of the information recording apparatus shown in FIG.
- FIG. 19 is a block connection diagram showing a main part of an example of the information recording apparatus according to the invention described in any one of the items 5 to 12 in the claims of the present application.
- FIG. 20 is a diagram illustrating a configuration example of a one-dimensional light modulation unit in the example of the information recording device illustrated in FIG.
- FIG. 21 is a diagram showing an example of a configuration of a laser light source and an optical system into which a laser light beam from the laser light source enters in the example of the information recording apparatus shown in FIG.
- FIG. 22 is a concept provided to explain a configuration example of the laser light source and the one-dimensional light modulator shown in FIG.
- FIG. 23 is a block connection diagram showing a main part of an example of the information recording / reproducing device according to the invention described in any one of the items 13 to 16 in the claims of the present application.
- FIG. 24 is a block connection diagram showing a main part of an example of the information recording / reproducing device according to the invention set forth in any one of the items (17) to (20) in the claims of the present application.
- FIG. 2.5 is a block connection diagram showing a main part of an example of the information recording / reproducing apparatus according to the invention described in any one of the items 21 to 28 in the claims of the present application.
- FIG. 26 is a block connection diagram showing a main part of another example of the information recording / reproducing device according to the invention described in any one of the items 21 to 28 in the claims of the present application.
- FIG. 27 is a block connection diagram showing a main part of an example of the information recording / reproducing device according to the invention described in any one of the items 29 to 36 in the claims of the present application.
- FIG. 28 is a block connection diagram showing a main part of another example of the information recording / reproducing apparatus according to any one of the items 29 to 36 in the claims of the present application.
- FIG. 9 shows a main part of an example of the information recording apparatus according to any one of the first to fourth aspects of the present invention.
- the example shown in Fig. 9 is for an optical recording medium. It uses a tape-shaped optical recording medium, that is, an optical tape, and records information on the optical tape.
- the example of the information recording apparatus shown in FIG. 9 includes a one-dimensional diode array 21 which forms a light source unit that continuously emits a plurality of laser light beams.
- the one-dimensional diode array 21 is formed with a plurality of laser diodes.
- a plurality of laser diodes 22 are formed in a linear arrangement, and a plurality of laser diodes 22 are formed.
- Each of the laser diodes 22 emits a single laser light beam. Therefore, from the one-dimensional diode array 21, those arranged in accordance with the linear arrangement of a plurality of laser diodes 22, in other words, those arranged substantially in a common plane A plurality of laser light beams are emitted.
- a modulation control signal transmitting section 23 is provided in connection with the one-dimensional diode array 21.
- the modulation control signal transmitting section 23 is supplied with a recording signal SS indicating a blue light to be recorded, and the modulation control signal transmitting section 23 converts the information to be recorded according to the recording signal SS.
- a plurality of modulation control signals SMD are formed and supplied to a plurality of laser diodes 2 in the one-dimensional diode array 21 respectively. As a result, each of the plurality of laser diodes 22 in the one-dimensional diode array 21 changes the laser light beam emitted by the laser diode 22 with an intensity change corresponding to the modulation control signal SMD, that is, according to the modulation control signal SMD. Modulated.
- a plurality of modulation control signals SMD from the modulation control signal transmitting unit 23 are supplied to the plurality of laser diodes 22.
- a plurality of modulation control signals SMD based on information to be recorded are obtained.
- a plurality of laser light beams (a plurality of modulated laser light beams) modulated in accordance with the arrangement are arranged and arranged in accordance with the linear arrangement of the plurality of laser diodes 22, in other words, substantially. It will be emitted as being arranged in a common plane.
- the plurality of modulated laser light beams modulated in accordance with the plurality of modulation control signals SMD emitted from the one-dimensional diode array 21 are transmitted through the optical system 24 that performs optical beam control to drive the recording medium.
- the light is incident on an optical tape 26, which is an optical recording medium driven and driven by the control unit 25.
- the optical system 24 that performs light beam control reduces the beam diameter of each of the plurality of modulated laser light beams arranged in a substantially common plane from the one-dimensional diode array 21.
- Focus control that focuses the light on the optical tape 26, and sets each of the multiple modulated laser light beams incident on the optical tape 26 to an appropriate focusing state on the optical tape 26.
- tracking control for causing each of the plurality of modulated laser light beams incident on the optical tape 26 to enter an appropriate position on the optical tape 26. As a result, information to be recorded is recorded on the optical tape 26 by the plurality of modulated laser light beams.
- the recording of information on the optical tape 26 using such a plurality of modulated laser light beams is performed using an optical fiber.
- a plurality of parallel recording tracks corresponding to the number of modulated laser light beams incident on the optical tape 26 are formed on the tape 26, each extending in the running direction of the optical tape 26. Is Each of the plurality of recording tracks has an information recording pattern corresponding to the modulation state of the corresponding modulated laser light beam.
- the optical system 24 includes, for example, a plurality of modulated lasers from a one-dimensional diode array 11 as shown in FIG.
- the light beam LB (the number of modulated laser light beams LB is assumed to be 4 in Fig. 11 for convenience), and the geometrical optical image for them is reduced without reaching the diffraction limit. It is also conceivable to narrow down the beam so as to make it enter the optical tape 26 as a modulated laser beam LB '.
- each beam diameter is set to a
- a beam interval is set to b
- a plurality of narrowed down modulated laser light beams are set.
- the plurality of modulated laser light beams LB are narrowed down in a similar relationship to form a plurality of modulated laser light beams LB ', and the beam interval b' is determined by the reduced beam diameter a '. The value will be taken accordingly.
- the recording tracks formed by the plurality of modulated laser light beams LB 'on the optical tape 26 are CH1, CH2, CH3,.
- the guard band exceeding the minimum necessary according to the beam interval b' of the plurality of modulated laser light beams LB ' Will be accompanied by GB.
- X represents the traveling direction of the optical tape 26
- Z represents a light beam spot formed on the optical tape 26 by each of the plurality of modulated laser light beams LB '.
- the fact that the recording track formed on the optical tape 26 is accompanied by a guard band exceeding the minimum required reduces the utilization rate of the optical tape 26 and reduces the utilization rate of the optical tape 26. This will hinder high-density information recording. Therefore, it is desired that the recording tracks formed on the optical tape 26 have a minimum guard band.
- the optical system 24 is actually, for example, as shown in FIG.
- the plurality of modulated laser light beams LB (the number of modulated laser light beams LB is assumed to be four in FIG. 13 for convenience) from the diode array 21 is converted into a plurality of light beams.
- the image is narrowed down to a state where the image is smaller than the diffraction limit, and is incident on the light beam 26 as a modulated laser light beam LB ".
- each beam diameter is set to a
- the beam interval is set to b
- a plurality of narrowed down modulations are performed.
- the geometrical optical image is narrowed down to the state where it is smaller than the diffraction limit.
- b can be reduced to 0 in principle, while beam diameter a" cannot be smaller than the value under the diffraction limit.
- the gap (b" -a ") between two adjacent modulated laser light beams LB" can be reduced to substantially zero.
- the gap (b "—a") between two adjacent modulated laser light beams LB "is reduced to substantially zero the narrowed modulated laser light beams LB" are separated by an optical tape 2. 6 are formed by a plurality of modulated laser light beams LB "on the optical tape 26 as incident light to form light spots arranged linearly in a direction perpendicular to the running direction on the optical tape 26.
- the recording tracks are required as shown in Fig.
- X indicates the traveling direction of the optical tape 26
- Z ' indicates the optical beam spot formed on the optical tape 26 by each of the plurality of modulated laser light beams LB ". .
- the plurality of modulated laser light beams from the optical system 24 'and the one-dimensional diode array 21 are narrowed down to a state where the geometrical optical image for them is smaller than the diffraction limit.
- the recording track formed on the optical tape 26 has a minimum necessary guard band.
- An example of the recording tracks CH ⁇ , CH 2 ′, CH 3 ′, ⁇ ′ ′, and CHn ′ formed on the optical tape 26 shown in FIG. 14 is obtained by a plurality of narrowed modulated laser light beams LB ′′.
- light is incident on the optical tape 26 so as to form light spots arranged linearly in a direction perpendicular to the running direction, as shown in FIG.
- the optical system 24 converts the narrowed down modulated laser light beams LB "into optical spots arranged linearly on the optical tape 26 in a direction at a predetermined angle to the running direction. It is also conceivable that the light is incident to form a target. In this case, as shown in FIG.
- the cuts Z ′ are arranged in a direction making an angle with respect to the running direction X of the optical tape 26.
- the distance between the centers of the adjacent two of the plurality of optical spots Z ′ in the direction orthogonal to the traveling direction X of the optical tape 26 is changed so that the plurality of modulated laser light beams LB ”are 26 is smaller than when the light spots are formed to form light spots arranged linearly in a direction perpendicular to the running direction on the light beam 26, so that the recording formed in the light beam 26
- a more advantageous situation can be obtained by having the track with the minimum required guard band.
- the optical system 24 converts the plurality of modulated laser light beams from the one-dimensional diode array 21 described above into those. It is assumed that the geometrical optical image can be in a state other than the state in which the geometrical optical image is not narrowed down to the state where the geometrical optical image is smaller than the diffraction limit and made incident on the light beam 26, instead of the state.
- the optical system 24 may include a plurality of modulations from the one-dimensional diode array 21 as shown in FIG. 17, for example.
- the laser light beam LB (the number of modulated laser light beams LB is also assumed to be 4 in Fig. 17 for convenience) is obtained with a geometrical optical image of them substantially under the diffraction limit.
- the laser beam is narrowed down to a state, and a plurality of modulated laser light beams LBS are incident on the optical tape 26.
- the plurality of modulated laser light beams LBS incident on the optical tape 26 are linearly formed in a direction at a predetermined angle other than 90 degrees or 180 degrees with respect to the traveling direction of the optical tape 26.
- the optical spots are arranged and arranged in a row.
- a plurality of optical spots ZS formed by a plurality of narrowed-down modulated laser light beams LBS are provided on the optical tape 26 . It is arranged linearly in a direction that forms an angle s other than 90 degrees or 180 degrees with respect to the traveling direction of 6. Then, the plurality of optical spots ZS are arranged such that the distance between the centers of two adjacent ones in the direction orthogonal to the running direction X of the optical tape 26 is the diameter of each of the plurality of optical spots ZS.
- Formed by the plurality of modulated laser beam beams LBS on the optical tape 26 are selected by selecting the angle so as to be equal to ⁇ ⁇ , CHS n (when the number of modulated laser light beams LBS is n) will be accompanied by the minimum (substantially zero) guard band.
- the optical system 24 converts the plurality of modulated laser light beams from the one-dimensional diode array 21 into a state in which a geometric optical image of them can be obtained substantially under the diffraction limit.
- the optical tape 26 is squeezed to form optical spots that are linearly arranged in a direction at a predetermined angle other than 90 degrees or 180 degrees with respect to the running direction. Even in this case, the recording track formed on the optical tape 26 can be accompanied by a minimum necessary guard band. According to the example of the information recording apparatus shown in FIG.
- FIG. 19 shows a main part of an example of the information recording apparatus according to the invention described in any one of the items 5 to 12 in the claims of the present application.
- the example shown in FIG. 19 also uses a tape-shaped optical recording medium, that is, an optical tape as the optical recording medium, and records information on the optical tape.
- a laser light source 31 which forms a light source unit that continuously emits a laser light beam is provided.
- the laser light beam emitted from the laser light source 31 is incident on the one-dimensional light modulator 33 by an optical system 32 including optical elements such as a plurality of lenses.
- the one-dimensional light modulator 33 includes a plurality of reflective light modulators 35, which are a plurality of light modulating means, disposed on a flat support member 34, assuming that two adjacent ones are close to each other. It is assumed that they are arranged in a pattern.
- Each of the plurality of reflection type optical modulators 35 modulates and reflects the light beam incident thereon according to a modulation control signal supplied from the outside.
- the laser light source 31 is connected to the one-dimensional diode array 21 shown in FIG.
- the optical system 32 emits a plurality of laser light beams arranged substantially in a common plane, and the optical system 32 includes a light beam collimating lens 36 and a condenser lens 37. It is comprised including.
- a plurality of laser light beams arranged in a substantially common plane from the one-dimensional diode array 21 are used. Beam enters the light beam collimating lens 36. Then, each of the plurality of laser light beams is converted into a parallel beam by the light beam collimating lens 36 and is incident on the condenser lens 37, and is focused by the condenser lens 37. It is assumed that the light enters the one-dimensional light modulator 33.
- the plurality of laser light beams incident on the one-dimensional light modulation section 33 and arranged in a substantially common plane were arranged in a linear manner in the one-dimensional light modulation section 33.
- the light is incident on the plurality of reflective optical modulators 35 in a state where the reflective optical modulators 35 are aligned with the arrangement direction of the plurality of reflective optical modulators 35.
- the one-dimensional light modulator 33 irradiates a plurality of reflective light modulators 35 arranged linearly, thereby forming a plurality of laser beams.
- a plurality of light spots 38 are formed by the beam.
- a modulation control signal transmitting section 39 is provided in association with the one-dimensional optical modulation section 33.
- the modulation control signal transmitting section 39 is supplied with a recording signal SS representing information to be recorded,
- the modulation control signal transmitting unit 39 forms a plurality of modulation control signals SME based on the information to be recorded according to the recording signal SS, and transmits them to a plurality of reflection type ones in the one-dimensional light modulation unit 33. These are supplied to the optical modulators 35, respectively.
- each of the plurality of reflective light modulators 35 in the one-dimensional light modulator 33 irradiates the plurality of reflective light modulators 35 arranged linearly as described above.
- Each of the plurality of laser light beams that form and enter the plurality of light spots 38 is modulated and reflected in accordance with the modulation control signal SME from the modulation control signal transmission unit 39.
- the modulation of the laser light beam by each of the plurality of reflective optical modulators 35 is performed by changing the amount of reflection of the incident laser light beam in accordance with the modulation control signal SME. ⁇ is done.
- the one-dimensional optical modulator 33 modulates each of the plurality of reflective optical modulators 35 arranged linearly in accordance with the modulation control signal SME from the modulation control signal transmitter 39. And a plurality of reflected laser light beams (modulated laser light beams) arranged in accordance with the arrangement of the plurality of reflective optical modulators 35, in other words, substantially in a common plane. are obtained. Then, a plurality of modulated laser light beams arranged in a substantially common plane from the one-dimensional light modulation unit 33 are passed through an optical system 24 that performs light beam control, and the recording medium drive control unit 2 The light is incident on an optical tape 26, which is an optical recording medium that is driven and driven by 5.
- the optical system 24, the recording medium drive controller 25, and the optical tape 26 are the same as those shown in FIG.
- the number of the plurality of laser light beams incident on the one-dimensional light modulator 33 is m
- the number of the plurality of reflective optical modulators 35 in the one-dimensional optical modulator 33 is n
- a relationship of m ⁇ n is established between the two.
- m n
- a plurality of laser light beams are respectively incident on a plurality of reflective optical modulators 35.
- a plurality of reflection-type optical modulators 35 include those in which the laser light beam is not incident.
- the reflection type optical modulator 35 in which the laser beam does not enter is excluded as being not used, and the reflection type optical modulator 35 in which the laser light beam enters enters the modulation control signal SME from the modulation control signal transmission unit 39. Is supplied to form a modulated laser light beam.
- one laser beam may enter a plurality of reflective optical modulators 35. In this case, one laser beam enters The same modulation control signal SME from the modulation control signal transmitting unit 39 is supplied to the plurality of reflection type optical modulators 35, whereby one modulation laser light beam is generated by the plurality of reflection type optical modulators 35. Will be formed.
- the optical system 24 for performing the light beam control has a plurality of modulations from the one-dimensional diode array 21 in the example of the information recording apparatus shown in FIG.
- Optical system that controls light beam for laser light beam Same as 24 Then, the plurality of modulated laser light beams from the one-dimensional light modulator 33 are narrowed down to a state where the geometrical optical image of each of the modulated laser light beams exceeds the diffraction limit and is reduced. Or a plurality of modulated laser light beams from the one-dimensional light modulating unit 33, when the geometrical optical image of them is substantially under the diffraction limit.
- the light spots are arranged so as to form light spots arranged linearly in the direction.
- FIG. 23 shows a main part of an example of the information recording / reproducing apparatus according to the invention described in any one of the items 13 to 16 in the claims of the present application.
- the information recording / reproducing apparatus shown in FIG. 23 uses a tape-shaped optical recording medium, that is, an optical tape as an optical recording medium, and records and reproduces information on and from the optical tape.
- an information recording unit 50 and an information reproducing unit 51 are provided, and the information recording unit 50 controls the recording medium drive control unit 52.
- the information is recorded on the optical tape 53 that is driven and travels, and is recorded on the information from the optical tape 53 that is driven and traveled by the recording medium driving control unit 52 by the information reproducing unit 51.
- the reproduced information is reproduced.
- the information recording section 50 has the same configuration as the main part of an example of the information recording apparatus according to any one of the first to fourth aspects of the present invention shown in FIG.
- each part and each signal in the information recording unit 50 are denoted by the same reference numerals as the corresponding parts and signals in the main part of the example of the information recording apparatus shown in FIG. They have been omitted and redundant explanations for them have been omitted.
- the information reproducing section 51 is provided with a laser light source 55 constituting a light source section for continuously emitting a laser light beam.
- a laser light source 55 for example, as shown in FIG. 10, a one-dimensional diode array 1 formed by providing a plurality of laser diodes 22 arranged linearly is used. Be composed.
- a plurality of laser beams from the laser light source 55 pass through an optical system 56 for performing light beam control, and are incident on an optical tape 53 driven by the recording medium drive control unit 52 and running. You.
- the optical tape 53 for example, information is recorded by the information recording unit 50.
- each of the optical tapes 53 is similar to the optical tape 26 shown in FIG. 14, FIG. 16 or FIG. It is assumed that a plurality of recording tracks CH1 'to CHn' or CHS1 to CHSn on which information is recorded are formed.
- the optical system 56 for controlling the light beam is a state in which two adjacent laser light beams arranged and arranged in a substantially common plane from the laser light source 55 come into close or mutual contact with each other, that is, adjacent to each other.
- the laser beam is incident on the optical tape 53 in a state where the gap between the two is extremely small or substantially zero, and a plurality of laser light beams incident on the optical tape 53 are respectively applied on the optical tape 53.
- Focus control for obtaining an appropriate focusing state, and input positions of a plurality of laser light beams incident on the optical tape 53 are adjusted by using a plurality of recording tracks CH I 'to CHn' or a plurality of recording tracks formed on the optical tape 53. Tracking control is performed so as to appropriately match CH S1 to CHS n.
- the recording tracks CH1 'to CHn' or CHS1 to (: are modulated according to the information recorded in each of the HSn, and a plurality of recording tracks CHI 'to CHn, or CHS1 to The light is reflected from each of the CH Sn and travels toward an optical system 57 including a plurality of optical elements.
- the optical system 57 is configured to record information recorded on an optical tape 53 from an optical tape 53.
- a plurality of laser light beams modulated according to the light are made to enter the light detection unit 58.
- the light detection unit 58 changes according to the change of each of the plurality of laser light beams that enter through the optical system 57.
- a plurality of output signals SIN to be obtained are obtained and supplied to the information reproducing unit 59.
- the information reproducing unit 59 includes a light detecting unit 5 The information recorded on the optical tape 53 is reproduced based on a plurality of output signals S IN from the optical tape 53.
- the laser light source 55 is configured by using a one-dimensional diode array 11, and is linearly formed. It is said to emit a plurality of laser light beams arranged in an array, but it is assumed that the laser light source 55 emits a single laser light beam instead of a plurality of laser light beams. It may be done. In such a case, the laser light beam incident on the optical tape 53 through the optical system 56 is converted into a single laser light beam, whereby, for example, a plurality of recording tracks are formed on the optical tape 53. The recorded information is reproduced sequentially.
- the information recording section 50 forms a recording track with a minimum necessary guard band on the optical tape 53 to record information.
- the non-contact information recording on the optical tape 53 can be performed in a state where the optical tape 53 can be recorded, and the difficulty in setting and maintaining the position of the optical system 24 for transmitting a plurality of modulated laser light beams is reduced. In addition to the reduction, the utilization rate of multiple light beams can be improved.
- information reproducing section 51 information to be reproduced from the optical tape 53 is modulated according to a modulation control signal SMD based on information to be recorded, and is arranged substantially in a common plane. Is recorded on the optical tape 53 by a plurality of laser light beams forming optical spots arranged linearly on the optical tape 53, and is recorded on the optical tape 53. Playback of information that has been processed requires complex signal processing It will be done relatively easily without being done.
- FIG. 24 shows a main part of an example of an information recording / reproducing apparatus according to the invention described in any one of the items (17) to (20) in the claims of the present application.
- the information recording / reproducing apparatus shown in FIG. 24 also uses a tape-shaped optical recording medium, that is, an optical tape as an optical recording medium, and records and reproduces information on and from the optical tape.
- an information recording unit 60 and an information reproducing unit 61 are provided, and the information recording unit 60 controls the recording medium drive control unit 52.
- Information is recorded on the optical tape 53 that is driven and travels, and information recorded on the optical tape 53 that is driven and traveled by the recording medium drive control unit 52 is recorded by the information reproducing unit 61. Is played.
- the recording medium drive controller 52 and the optical tape 53 are the same as those shown in FIG.
- the information recording unit 60 has the same configuration as the main part of an example of the information recording device according to the invention described in any one of the items 5 to 12 in the claims of the present application shown in FIG.
- each part and each signal in the information recording unit 60 have the same reference numerals as the corresponding parts and signals in the main part of the example of the information recording device shown in FIG. They are attached and their explanations are omitted.
- the information reproducing unit 61 has the same configuration as the information reproducing unit 51 shown in FIG. 23.
- each unit and each signal in the information reproducing unit 61 are shown in FIG. 3 are denoted by the same reference numerals as the corresponding parts and signals in the information reproducing unit 51 shown in FIG. 3, and redundant description thereof will be omitted.
- FIG. 25 shows a main part of an example of the information recording / reproducing apparatus according to the invention described in any one of the items 21 to 28 in the claims of the present application.
- the example of the information recording / reproducing apparatus shown in FIG. 25 also uses a tape-shaped optical recording medium, that is, an optical tape as an optical recording medium, and records and reproduces information on and from the optical tape.
- a one-dimensional diode array 71 constituting a light source section that continuously emits a plurality of laser light beams.
- This one-dimensional diode array 71 is similar to the one-dimensional diode array 21 shown in FIGS. 9 and 10, and includes, for example, a plurality of laser diodes each emitting a single laser light beam. Are formed in a linear array. Therefore, from the one-dimensional diode array 71, it is assumed that the laser diodes are arranged in accordance with the linear arrangement of a plurality of laser diodes, in other words, they are arranged substantially in a common plane. Multiple laser light beams are emitted.
- a modulation control signal transmitting unit 72 is provided in association with the one-dimensional diode array 71.
- the modulation control signal transmission section 72 has the same configuration as the modulation control signal transmission section 23 shown in FIG.
- a recording signal SS representing information to be recorded is supplied, and a plurality of modulation control signals SMD based on the information to be recorded are formed in accordance with the recording signal SS, and these are modulated.
- each of the plurality of laser diodes in the dimensional diode array 71 receives a plurality of modulation control signals SMD based on information to be recorded from the modulation control signal transmitting unit 72, the laser light beams emitted by the plurality of laser diodes emit the laser light beams.
- a signal accompanied by a change in intensity according to the modulation control signal SMD that is, a signal modulated according to the modulation control signal SMD, and a plurality of preset modulation control signals from the modulation control signal transmission unit 72.
- the SNM is supplied, the laser beam emitted from the SNM has a constant intensity without being modulated.
- a plurality of laser light beams modulated according to a plurality of modulation control signals SMD based on information to be recorded or a plurality of laser light beams not modulated are provided.
- the laser diode is emitted as being arranged according to the linear arrangement of a plurality of laser diodes, in other words, being arranged substantially in a common plane.
- a plurality of laser beams obtained from the one-dimensional diode array 71 and arranged substantially in a common plane pass through a polarization beam splitter through an optical system 73 including a light beam collimating lens and the like. It is incident on 4.
- a plurality of laser light beams obtained from the one-dimensional diode array 71 incident on the polarization beam splitter 74 pass through the polarization beam splitter 74.
- the plurality of laser light beams transmitted through the polarization beam splitter 74 pass through the quarter-wave plate 75, and pass through an optical system 76 for controlling a light beam, and the recording medium drive control unit 7 7
- the light enters an optical tape 78, which is an optical recording medium that is driven and driven by the optical recording medium.
- the optical system 76 that controls the light beam reduces the beam diameter of each of the plurality of laser light beams that have passed through the quarter-wave plate 75 and are arranged in a substantially common plane. Focus control that focuses on the optical tape 78 with each of the plurality of laser light beams incident on the optical tape 78 Tracking control is performed so that each of the plurality of laser light beams incident on the optical tape 78 is incident on an appropriate position on the optical tape 78.
- the optical system 76 is configured such that, for a plurality of laser light beams incident on the optical tape 78, the optical system 24 for controlling the light beam shown in FIG. Modulates the laser light beam in a manner similar to that applied to the laser light beam, and passes through the quarter-wave plate 75 a plurality of laser light beams arranged substantially in a common plane.
- the optical tape 78 driven and driven by the recording medium drive controller 77 is linearly arrayed in a direction at a predetermined angle other than 90 degrees or 180 degrees with respect to the running direction.
- the incident light is assumed to form the arranged light spot.
- the modulation control signal SMD Information to be recorded on the optical tape 78 is recorded by a plurality of laser light beams modulated accordingly.
- the optical tape 78 may include a plurality of recording tracks.
- the information is recorded as follows, and the plurality of laser light beams are appropriately incident on the plurality of recording tracks by the optical system 76 for controlling the light beam.
- Each of the plurality of laser light beams which are to be incident on the plurality of recording tracks formed on the optical tape 78 is subjected to modulation according to the information recorded on each of the plurality of recording tracks, and The light is reflected on each of the recording tracks of the optical system, and is obtained as the light traveling toward the optical system 76.
- the plurality of laser beams obtained from the optical tape 78 pass through the optical system 76 and the quarter-wave plate 75 and enter the polarization beam splitter 74.
- the plurality of laser light beams obtained from the optical tape 78 incident on the polarizing beam splitter 74 are reciprocated through the quarter-wave plate 75, and are incident on the polarizing beam splitter 74.
- the polarization plane is rotated by 90 ° as compared with the plurality of laser beams from the one-dimensional diode array 71 and reflected by the polarization beam splitter 74 to the right in FIG. 25. .
- the plurality of laser light beams reflected by the polarization beam splitter 74 enter the optical beam splitter 80, and a part of the laser beam is reflected by the optical beam splitter 80 downward in FIG.
- the light enters the focus / tracking detection unit 82 through an optical element 81 such as a cylindrical lens, and another part of the light passes through the optical beam splitter 80, for example.
- the light enters the light detection unit 84 through an optical element 83 such as an optical lens.
- the focus / tracking detection unit 82 outputs an output signal SF indicating a focus state of the plurality of laser light beams incident on the optical tape 78 in accordance with the plurality of laser light beams incident through the optical element 81.
- An output signal ST indicating the tracking state is transmitted.
- These output signals SF and ST are output to the optical system 76 for beam control. It is used for focus control and tracking control for each of a plurality of laser light beams incident on the optical tape 78.
- the light detection section 84 obtains a plurality of output signals SIN, each of which changes in accordance with a change in each of the plurality of laser light beams incident through the optical element 83, and sends them to the information reproducing section 85.
- the information reproducing unit 85 reproduces information recorded on the optical tape 78 based on the plurality of output signals S IN from the light detecting unit 84.
- the modulation control signal transmitting section 72 sends the recording signal SS.
- a plurality of modulation control signals SMD based on the information to be recorded, which are formed in accordance with the above, are transmitted, and are supplied to a plurality of laser diodes in the one-dimensional diode array 71, respectively.
- a plurality of laser light beams modulated according to the modulation control signal SMD are obtained from the one-dimensional diode array 71 as being substantially arranged and arranged in a common plane.
- a plurality of laser light beams modulated according to the modulation control signal SMD obtained from the one-dimensional diode array 71 pass through an optical system 73, a polarizing beam splitter 74, and a quarter-wave plate 75, and are beam-controlled.
- the optical tape 76 which is driven by the recording medium drive control unit 77 and travels under the focus control and tracking control by the optical system 76. Incident.
- information to be recorded is recorded on the optical tape 78 by a plurality of laser light beams modulated according to the modulation control signal SMD, and should be recorded on the optical tape 78.
- a plurality of recording tracks on which information is recorded are formed.
- the optical system 76 converts a plurality of laser light beams, which have passed through the quarter-wave plate 75 and are modulated according to the modulation control signal SMD, and arranged substantially in a common plane, to each other.
- the modulation control signal SMD which is narrowed down to a state where the geometrical optical image of A plurality of laser light beams that have been modulated and arranged substantially in a common plane so as to obtain a geometrical optical image of them substantially under the diffraction limit.
- a state is formed in which light spots are formed as light spots arranged linearly in a direction at a predetermined angle other than 90 degrees or 180 degrees with respect to the traveling direction.
- Information recording on such an optical tape 78 is performed by recording tracks CH, CH 2 *, CH 3 ',-formed on the optical tape 26 shown in FIG. 14, FIG. 16 or FIG. 18.
- - ⁇ , CH n 'or CHS l, CHS 2, CHS 3,- ⁇ , similar to 31 ⁇ 31-each is incident on the optical tape 78 extending in the running direction of the optical tape 78
- a plurality of recording tracks corresponding to the number of laser light beams are formed on an optical tape 78 with a minimum guard band.
- Each of such a plurality of recording tracks Have a recording pattern corresponding to the modulation state of the corresponding laser light beam.
- a plurality of unmodulated laser light beams obtained from the one-dimensional diode array 71 pass through an optical system 73, a polarizing beam splitter 74 and a quarter-wave plate 75, and are subjected to beam control.
- the optical tape 78 includes recording tracks CH 1 ′, CH 2 ′, and CH 3 ′ formed on the optical tape 26 shown in FIG. 14, FIG. 16 or FIG. , ⁇ , CHn 'or CHS 1, CHS 2, CHS 3, ⁇ ⁇ ⁇ , similar to CHS n, multiple recorded tracks on which information is recorded with the minimum necessary guard band It is formed as something. Then, the incident positions of the plurality of laser light beams on the optical tape 78 are appropriately matched with the plurality of recording tracks by the optical system 76.
- the optical system 76 converts the plurality of unmodulated, substantially modulated laser light beams that have passed through the quarter-wave plate 75 into a common plane.
- the optical image is narrowed down to a state where it is smaller than the diffraction limit and is made to enter the optical tape 78, or the optical image is passed through the quarter-wave plate 75, and is not modulated.
- a plurality of laser light beams arranged in a plane are narrowed down so that a geometrical optical image of them can be obtained substantially under the diffraction limit. In this state, the light is incident as a light spot arranged linearly in a direction at a predetermined angle other than 90 degrees or 180 degrees with respect to the direction.
- Each of the plurality of laser light beams whose incident positions are properly matched to the plurality of recording tracks formed on the optical tape 78 is used for the information recorded on each of the plurality of recording tracks. It is modulated and reflected according to the optical system from optical tape 7 8 Obtained as going to 76.
- the plurality of laser light beams modulated according to the information recorded on the optical tape 78 obtained from the optical tape 78 pass through the optical system 76 and the quarter-wave plate 75 to form a polarization beam.
- the light is reflected by the splitter 74 and is split by the optical beam splitter 80 through the optical element 81 into the focus / tracking detecting section 82 and is split into the optical detecting section 84 through the optical element 83. It is said.
- an output signal SF indicating a force state and a output signal ST indicating a tracking state for a plurality of laser light beams incident on the optical tape 78 are obtained.
- a plurality of output signals SIN that change in response to changes in each of the plurality of laser beams that are modulated according to the information recorded on the optical tape 78 are generated. After that, they are supplied to the information reproducing unit 85. As a result, the information recorded on the optical tape 78 is reproduced in the information reproducing section 85 based on the plurality of output signals S IN from the light detecting section 84.
- the information to be reproduced from the optical tape 78 is modulated according to a modulation control signal based on the information to be recorded, arranged substantially in a common plane, and linearly arranged on the optical tape 78.
- a plurality of laser beams forming an optical spot are arranged and recorded on the optical tape 78, so that the information recorded on the optical tape 78 can be reproduced and complicated signal processing can be performed. It will be done relatively easily without any need.
- FIG. 26 shows a main part of another example of the information recording / reproducing device according to the invention described in any one of the items 21 to 28 in the claims of the present application.
- the information recording / reproducing apparatus shown in FIG. 26 also uses a tape-shaped optical recording medium, that is, an optical tape as an optical recording medium, and records and reproduces information on and from the optical tape.
- the main part of the example of the information recording / reproducing apparatus shown in FIG. 26 is composed of the same components as the main part of the example of the information recording / reproducing apparatus shown in FIG. 25, and FIG.
- the parts and signals of the main parts of the example of the information recording / reproducing apparatus shown therein are denoted by the same reference numerals as the corresponding parts and signals of the main parts of the example of the information recording / reproducing apparatus shown in FIG. They are shown, and duplicate explanations for them are omitted.
- the example of the information recording / reproducing apparatus shown in FIG. 26 is different from the example of the information recording / reproducing apparatus shown in FIG. 25 in terms of the polarization characteristics of the polarization beam splitter 74, the one-dimensional diode array 71, and the modulator.
- the arrangement relationship of the parts including the information reproducing unit 85 are different from each other.
- the one-dimensional diode array 71 modulates the signal in accordance with the modulation control signal SMD or generates a constant intensity without being modulated.
- a plurality of laser light beams obtained from the laser beam enter the polarization beam splitter 74 through the optical system 73, and are reflected upward at the polarization beam splitter 74 in FIG.
- the light enters the optical tape 78 through the optical system 75 and the optical system 76.
- a plurality of laser beams from the optical tape 78 modulated in accordance with the information recorded on the optical tape 78 pass through the optical system 76 and the quarter-wave plate 75 to be polarized beam splitter.
- the light beam enters the polarization beam splitter 74, travels through the polarization beam splitter 74, enters the light beam splitter 80, and a part of the light beam passes through the light beam splitter 80, and the optical element 8 1
- the light enters the focus / tracking detector 82 through the optical beam splitter 80, and another part is reflected to the left in FIG. 26 by the optical beam splitter 80, and passes through the optical element 83 to the optical detector 83. Incident on.
- the operations of the one-dimensional diode array 71, the modulation control signal transmitting section 72, the optical system 76, the focus / tracking detecting section 82, the information reproducing section 85, etc. are as shown in FIG. Is the same as that of the example of the information recording / reproducing apparatus shown in FIG. Therefore, the effect obtained by the example of the information recording / reproducing apparatus shown in FIG. 26 is the same as that of the example of the information recording / reproducing apparatus shown in FIG.
- FIG. 27 shows a main part of an example of the information recording / reproducing apparatus according to the invention described in any one of the items 29 to 36 in the claims of the present application.
- the example of the information recording / reproducing apparatus shown in FIG. 27 also uses a tape-shaped optical recording medium, that is, an optical tape as an optical recording medium, and records and reproduces information on and from the optical tape.
- the laser light source 9 constituting the light source section for continuously emitting the laser light beam and the laser light beam emitted from the laser light source 91 are provided.
- An optical system 92 including a plurality of incident optical elements such as lenses is provided.
- the laser light source 91 and the optical system 92 are the same as the laser light source 31 and the optical system 32 in the example of the information recording apparatus shown in FIG. 19 described above.
- the optical system 92 includes an optical beam collimating lens 36 and a condensing lens 37 shown in FIG. 21 as well as the one-dimensional diode array 21 shown in FIG. Then, a plurality of laser light beams which are arranged and arranged substantially in a common plane are derived from the optical system 92.
- the plurality of laser beams emitted from the optical system 92 are incident on the polarization beam splitter 93, and are reflected downward at the polarization beam splitter 93 in FIG.
- the light passes through the wave plate 94 and enters the condenser lens 95.
- the condenser lens 95 condenses the laser light beam that has passed through the wavelength plate 94 onto the one-dimensional light modulator 96.
- the one-dimensional light modulator 96 is a one-dimensional light modulator in the example of the information recording device shown in FIG. It is the same as part 33. Then, for example, the one-dimensional light modulator 33 shown in FIG.
- the 20 includes a plate-shaped support member 34, a reflection type light modulator 35 as a plurality of light modulation means, and two adjacent ones adjacent to each other.
- the one-dimensional light modulation section 96 includes a plurality of light modulating means on a flat supporting member corresponding to the flat supporting member 34.
- the reflection type optical modulators corresponding to the reflection type optical modulators 35 are linearly arranged so that two adjacent ones are close to each other.
- the plurality of laser light beams which are incident on the one-dimensional light modulator 96 and are arranged in a substantially common plane are arranged in a linear manner in the one-dimensional light modulator 96.
- the light is incident on the plurality of reflective optical modulators in a state in which the arrangement direction coincides with the arrangement direction of the plurality of reflective optical modulators.
- the one-dimensional light modulator 96 illuminates a plurality of reflective light modulators arranged linearly.
- a plurality of light spots by a plurality of laser light beams are formed.
- a modulation control signal transmission section 97 is provided in association with the one-dimensional light modulation section 96, and the modulation control signal transmission section 97 is supplied with a recording signal SS representing information to be recorded. Under such circumstances, the modulation control signal transmitting unit 97 sets the plurality of modulation control signals SME based on the information to be recorded according to the recording signal SS, or irrespective of the recording signal, In a state where a plurality of set modulation control signals SOM are formed, a plurality of modulation control signals SME or a plurality of modulation control signals S 0 M are linearly arranged in the one-dimensional light modulation unit 96. Each is supplied to a plurality of reflection type optical modulators.
- each of the plurality of reflection type optical modulators in the one-dimensional optical modulation section 96 receives a plurality of modulation control signals SME based on information to be recorded from the modulation control signal transmission section 97, A plurality of light spots are formed to irradiate a plurality of reflective light modulators arranged in a line, respectively, and a plurality of laser light beams incident thereon are modulated and reflected according to a modulation control signal SME.
- the modulation of the laser beam by each of the plurality of reflection type optical modulators is performed by changing the amount of reflection of the incident laser beam in accordance with the modulation control signal SME.
- each of the plurality of reflection-type optical modulators in the one-dimensional optical modulation section 96 is linear when a plurality of preset modulation control signals S 0 M are supplied from the modulation control signal transmission section 97.
- a plurality of light spots are formed to irradiate a plurality of reflective light modulators arranged in an array, and a plurality of laser light beams incident thereon are reflected with a constant reflection amount without being modulated.
- a plurality of reflective optical modulators linearly arranged on the common plane portion are modulated according to the modulation control signal SME and reflected respectively.
- Those arranged according to the arrangement of the modulators in other words, It is obtained as being substantially arranged in a common plane, and is guided toward the condenser lens 95.
- the plurality of laser light beams obtained from the one-dimensional light modulator 96 pass through the condenser lens 95 and the ⁇ wavelength plate 94 and enter the polarization beam splitter 93. Since a plurality of laser light beams incident on the polarization beam splitter 93 and obtained from the one-dimensional light modulator 96 pass through the quarter-wave plate 94 reciprocally, the polarization beam The polarization plane is rotated by 90 ° as compared with the laser beam from the optical system 92 incident on the splitter 93, and transmits through the polarization beam splitter 93.
- the plurality of laser light beams transmitted through the polarization beam splitter 93 pass through a quarter-wave plate 98, and are driven by a recording medium drive control unit 100 through an optical system 99 for controlling a light beam.
- a recording medium drive control unit 100 Incident on an optical tape 10 i, which is an optical recording medium traveling.
- the optical system 99 that controls the light beam reduces the beam diameter of each of a plurality of laser light beams that have passed through the quarter-wave plate 98 and are arranged in a substantially common plane. Focusing on the optical tape 101 while focusing on the optical tape 101, and making each of the plurality of laser light beams incident on the optical tape 101 have an appropriate focusing state on the optical tape 101 Control and tracking control for causing each of the plurality of laser light beams incident on the optical tape 101 to enter an appropriate position on the optical tape 101 are performed. Further, the optical system 99 is configured such that, for a plurality of laser light beams incident on the optical tape 101, an optical system 24 for performing optical beam control shown in FIG.
- the plurality of laser light beams passing through the plate 98 and arranged substantially in a common plane are brought into a state in which a geometric optical image thereof can be obtained substantially under the diffraction limit.
- the vehicle is driven by the recording medium drive control unit 100
- the tape 1 0 taking state to be incident as forming a sequence alignment light spot Bok in a direction forming a predetermined angle other than 9 0 degree or 1 8 0 degrees with respect to the running direction linearly. If a plurality of laser light beams incident on the optical tape 101 are modulated and reflected by the one-dimensional light modulator 96 according to the modulation control signal SME, modulation control is performed. Information to be recorded on the optical tape 101 is recorded by a plurality of laser light beams modulated according to the signal SME.
- the optical tape 101 is It is assumed that information is recorded with a plurality of recording tracks, and a plurality of laser light beams are appropriately incident on a plurality of recording tracks by an optical system 99 for controlling a light beam. It is assumed.
- Each of the plurality of laser light beams incident on the plurality of recording tracks formed on the optical tape 101 undergoes modulation corresponding to the information recorded on each of the plurality of recording tracks, and The light is reflected on each of the plurality of recording tracks, and is obtained as being directed to the optical system 99.
- a plurality of laser beams obtained from the optical tape 101 pass through the optical system 99 and the quarter-wave plate 98 and enter the polarization beam splitter 93.
- the polarization beam splitter 93 Since a plurality of laser light beams obtained from the optical tape 101 incident on the polarization beam splitter 93 have reciprocated through the ⁇ wavelength plate 98, the polarization beam splitter 93 The polarization plane is rotated by 90 ° as compared with the plurality of laser light beams from the one-dimensional light modulator 96 incident on the polarization beam splitter 93, as shown in FIG. 27 in the polarization beam splitter 93. Reflects to the right.
- the plurality of laser light beams reflected by the polarization beam splitter 93 enter the light beam splitter 102, and a part of the laser light beam is reflected downward by the light beam splitter 102 in FIG.
- the optical element 103 such as an optical element
- the light is incident on the focus / tracking detection unit 104, and the other part is transmitted through the light beam splitter 102, for example, an optical element 105 such as a condenser lens.
- an optical element 105 such as a condenser lens
- the focus tracking detection unit 104 is configured to control the force state of the plurality of laser light beams incident on the optical tape 101 in response to the plurality of laser light beams incident through the optical element 103. And the output signal ST indicating the tracking state. These output signals SF and ST are used for focus control and tracking control with respect to each of a plurality of laser light beams incident on the optical tape 101 in the optical system 99 for performing beam control.
- the photodetector 106 obtains a plurality of output signals SIN, each of which changes in accordance with a change in each of the plurality of laser light beams incident through the optical element 105, and reproduces the information.
- the information reproducing unit 107 reproduces information recorded on the optical tape 101 based on the plurality of output signals S IN from the light detecting unit 106.
- the information recording / reproducing apparatus shown in FIG. 27 when information to be recorded on the optical tape 101 is recorded, the information is recorded from the modulation control signal transmitting section 97.
- a plurality of modulation control signals SME based on the power information are transmitted, and are supplied to the plurality of reflection type optical modulators in the one-dimensional optical modulation section 96, respectively.
- the one-dimensional optical modulator 96 modulates and reflects each according to the modulation control signal SME at a plurality of reflective optical modulators arranged linearly on the common plane, and substantially reflects the light.
- a plurality of laser light beams arranged and arranged in a common plane are obtained as directed to the condenser lens 95.
- the modulation control signal obtained from the one-dimensional optical modulation section 96 The beam passes through a condenser lens 95, a quarter-wave plate 94, a polarizing beam splitter 93, and a quarter-wave plate 98, and reaches an optical system 99 for beam control. Then, under the force control and tracking control by the optical system 99, the light enters the optical tape 101 which is driven and traveled by the recording medium drive control unit 100. As a result, information to be recorded is recorded on the optical tape 101 by a plurality of laser light beams modulated in accordance with the modulation control signal SME, and the information is recorded on the optical tape 101. A plurality of recording tracks on which information to be recorded is recorded are formed.
- the optical system 99 transmits a plurality of laser light beams that have passed through the quarter-wave plate 98 and are modulated in accordance with the modulation control signal SME and arranged substantially in a common plane.
- the optical system 99 transmits a plurality of laser light beams that have passed through the quarter-wave plate 98 and are modulated in accordance with the modulation control signal SME and arranged substantially in a common plane.
- the aperture is narrowed down to the point where geometrical optical images for them can be obtained substantially under the diffraction limit, and the optical tape 101 is 90 ° or 180 ° relative to its running direction.
- Light is incident on the light spots so as to form light spots arranged linearly in directions other than a predetermined angle.
- a plurality of laser light beams arranged in a substantially common plane incident on the optical tape 101 are recorded.
- information recorded on the optical tape 101 with a plurality of recording tracks has a certain phase difference between recording tracks corresponding to a specific angle.
- a plurality of unmodulated laser light beams obtained from the one-dimensional light modulator 96 are passed through a condenser lens 95, a quarter-wave plate 94, a polarizing beam splitter 93, and a quarter-wave plate 98. Then, the light reaches the optical system 99 for performing beam control, and enters the optical tape 101 under the focus control and tracking control of the optical system 99.
- the optical tape 101 includes recording tracks CH, CH 2 ′, CH 3 ′, formed on the optical tape 26 shown in FIG. 14, FIG. 16 or FIG.
- the optical system 99 also passes the unmodulated laser light beams that have passed through the quarter-wave plate 98 and are arranged in a substantially common plane to the geometrical shape of the laser light beams.
- a plurality of laser light beams arranged in a plane are narrowed down so that a geometrical optical image of the laser light beams can be obtained substantially under the diffraction limit, and the optical tape 101 is moved in the traveling direction.
- the light spots are made to form light spots arranged linearly in a direction at a predetermined angle other than 90 degrees or 180 degrees.
- Each of the plurality of laser light beams whose incident positions are properly matched to the plurality of recording tracks formed on the optical tape 101 is recorded on each of the plurality of recording tracks.
- the light is modulated and reflected according to the obtained information, and is obtained from the optical tape 101 toward the optical system 99.
- the plurality of laser light beams modulated according to the information recorded on the optical tape 101 obtained from the optical tape 101 pass through the optical system 99 and the quarter-wave plate 98 to form a polarization beam.
- Reflected by the optical splitter 93 is split by the light beam splitter 102 through the optical element 103 to the focus detection unit 104, and is incident on the light detection unit 106 through the optical element 105. It is assumed to be split incidence.
- an output signal SF indicating a focus state and an output signal ST indicating a tracking state for a plurality of laser light beams incident on the optical tape 101 are obtained.
- a plurality of output signals SIN that change in accordance with respective changes of a plurality of laser light beams modulated in accordance with information recorded on the optical tape 101 are obtained, These are supplied to the information reproducing unit 107.
- the information recorded on the optical tape 101 is reproduced in the information reproducing unit 107 based on the plurality of output signals SIN from the light detecting unit 106.
- a non-contact information recording on the optical tape 101 can be performed in a state where a recording track with a minimum necessary band is formed and information can be recorded, and a plurality of laser beams can be recorded. Difficulty in setting and maintaining the positional relationship of the plurality of optical means for transmitting or reflecting the beam is reduced, and the utilization rate of the plurality of light beams is improved. Further, information to be reproduced from the optical tape 101 is modulated in accordance with a modulation control signal based on the information to be recorded and arranged substantially in a common plane.
- the laser beam was recorded on the optical tape 101 by a plurality of laser beams forming the optical spots arranged in a line, so that the optical tape 101 was recorded on the optical tape 101. Reproduction of information is relatively easy without the need for complicated signal processing.
- FIG. 28 shows a main part of another example of the information recording / reproducing apparatus according to the invention described in any one of the items 29 to 36 in the claims of the present application.
- the example of the information recording / reproducing apparatus shown in FIG. 28 also uses a tape-shaped optical recording medium, that is, an optical tape as an optical recording medium, and records and reproduces information on and from the optical tape. .
- the main part of the example of the information recording / reproducing apparatus shown in FIG. 28 is composed of the same components as the main part of the example of the information recording / reproducing apparatus shown in FIG. 27.
- the parts and signals of the main parts of the example of the information recording / reproducing apparatus shown therein are denoted by the same reference numerals as the corresponding parts and signals of the main parts of the example of the information recording / reproducing apparatus shown in FIG. They are shown, and duplicate explanations for them are omitted.
- the example of the information recording / reproducing apparatus shown in FIG. 28 is different from the example of the information recording / reproducing apparatus shown in FIG. 27 in that the polarization characteristics of the polarizing beam splitter 93, the 1/4 wavelength plate 94, and the condenser lens 9 5, a part including a dimensional light modulation section 96 and a modulation control signal transmission section 97, and a light beam splitter 102, an optical element 103, a focus * tracking detection section 104, and an optical element
- the arrangement relationship of the part including the element 105, the light detection part 106, and the information reproduction part 107 is different from each other.
- the laser beam emitted from the laser light source 91 and incident on the polarization beam splitter 93 through the optical system 92 is polarized by a polarization beam splitter.
- the light enters the one-dimensional light modulator 96 through a quarter-wave plate 94 and a condenser lens 95.
- the one-dimensional light modulator 96 the light was modulated and reflected by a plurality of reflective light modulators arranged linearly in the one-dimensional light modulator 96 according to information to be recorded.
- a plurality of laser light beams or a plurality of laser light beams reflected with a constant reflection amount without being modulated by the one-dimensional light modulator 96 are formed into a condenser lens 95 and a quarter-wave plate.
- the incident light enters the polarization beam splitter 93 through the optical fiber 94, and is reflected upward in FIG. 18 at the polarization beam splitter 93, and is passed through the quarter-wave plate 98 and the optical system 99 for beam control. It is incident on 10 1.
- a plurality of laser light beams modulated according to the information recorded on the optical tape 101 from the optical tape 101 are transmitted through an optical system 99 and a quarter-wave plate 98 to a polarizing beam splitter.
- the light beam enters the polarization beam splitter 103 and travels through the polarization beam splitter 93 to enter the light beam splitter 102, and a part of the light beam splitter 102 is shown in FIG. 28 at the light beam splitter 102.
- the light is reflected to the left, enters the focus / tracking detection unit 104 through the optical element 103, and another part transmits through the optical beam splitter 102, and the optical element 105 Through the photodetector 106 through
- the operations of the one-dimensional light modulation section 96, modulation control signal transmission section 97, optical system 99, focus / tracking detection section 104, and information reproduction section 107 are as follows. This is the same as the case of the information recording / reproducing apparatus shown in FIG. 27. Therefore, the effect obtained by the example of the information recording / reproducing apparatus shown in FIG. 28 is the same as that of the example of the information recording / reproducing apparatus shown in FIG. Industrial applicability
- a plurality of laser dies arranged linearly are arranged. Modulation based on information to be recorded using a light source unit having a diode, a plurality of light beams modulated according to a control signal are arranged according to an arrangement of a plurality of laser diodes, that is, An optical recording medium driven by a recording medium drive control unit, formed with an arrangement arranged substantially in a common plane, and narrowed down to a state where the geometrical optical image exceeds the diffraction limit and is reduced to a small size.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane
- the light spots are linearly arranged and arranged on the optical recording medium, so that the reproduction of the information recorded on the optical recording medium is complicated. It can be performed relatively easily without requiring any significant signal processing.
- a light source unit having a plurality of laser diodes arranged linearly is used to record information to be recorded.
- a plurality of light beams modulated according to a modulation control signal based on the laser beam are arranged in accordance with the arrangement of a plurality of laser diodes, that is, arranged substantially in a common plane. They are formed in a row arrangement and they are narrowed down so that the geometrical optical image can be obtained substantially under the diffraction limit.
- a recording track with a minimum necessary guard band is formed on a tape-shaped optical recording medium, and information is formed.
- the non-contact information recording on the tape-shaped optical recording medium can be performed, and the setting and the positional relationship of the plurality of optical means for transmitting or reflecting a plurality of light beams can be performed. Maintenance difficulties will be reduced and the utilization of multiple light beams will be improved.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- the light beam is incident on the tape-shaped optical recording medium, the light spots are formed on the tape-shaped optical recording medium so that the light spots are arranged linearly on the tape-shaped optical recording medium. Reproduction of information recorded in a computer can be performed relatively easily without requiring complicated signal processing.
- the light source unit includes a plurality of laser diodes arranged linearly. And a one-dimensional light modulation unit having a plurality of light modulation means arranged linearly, and a plurality of light beams modulated according to a modulation control signal based on information to be recorded.
- a modulation control signal based on information to be recorded.
- Non-contact information recording on an optical recording medium can be performed, and the difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams is reduced, and The utilization of the plurality of light beams is improved.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane
- the light spots are linearly arranged and arranged on the optical recording medium, so that the reproduction of information recorded on the optical recording medium is complicated. It can be performed relatively easily without requiring any significant signal processing.
- the light source unit includes a plurality of laser diodes arranged linearly.
- a one-dimensional light modulation unit having a plurality of light modulation means arranged in a line is used, and a plurality of light beams modulated in accordance with a modulation control signal based on information to be recorded are used.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- a modulation control signal based on the information to be recorded
- the first recording / reproducing apparatus includes a plurality of laser diodes arranged linearly.
- a plurality of light beams modulated by a light source unit in accordance with a modulation control signal based on information to be recorded are arranged in accordance with an arrangement of a plurality of laser diodes, that is, a substantially common plane. Is formed with an arrangement placed inside the optical recording medium, and the force, the geometrical optical image is narrowed down to a state where it exceeds the diffraction limit and becomes small, and is incident on the optical recording medium driven by the recording medium drive control unit.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane Is incident on the optical recording medium to form optical spots arranged linearly on the optical recording medium, so that, for example, the light beam from the second light source unit is used for recording.
- the reproduction of the information recorded on the optical recording medium which is performed assuming that it is incident on the optical recording medium driven by the medium drive control unit, does not require complicated signal processing in the information reproduction unit. It can be done relatively easily.
- the first light source including a plurality of laser diodes arranged linearly Used to modulate according to the modulation control signal based on the information to be recorded
- a plurality of light beams are formed with an arrangement corresponding to the arrangement of the plurality of laser diodes, that is, an arrangement that is substantially located in a common plane, and the geometrical optical image is substantially diffraction-limited. It is narrowed down to obtain the originally obtained state, and is incident on the running tape-shaped optical recording medium to form optical spots arranged at a predetermined angle to the running direction.
- Non-contact information recording on a tape-shaped optical recording medium is a state in which information can be recorded by forming a recording track with a minimum required guard band on the tape-shaped optical recording medium. And the difficulty in setting and maintaining the positional relationship of the plurality of optical means for transmitting or reflecting a plurality of light beams is reduced. In both cases, the utilization of multiple light beams is improved.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- the light beam is incident on the tape-shaped optical recording medium, the light beam is formed while forming the optical spots arranged linearly on the tape-shaped optical recording medium.
- the reproduction of the information recorded on the tape-shaped optical recording medium which is performed by assuming that the light beam from the light source section is incident on the tape-shaped optical recording medium driven by the recording medium drive control section, is the information reproduction.
- the signal processing can be performed relatively easily without requiring complicated signal processing.
- the first light source including a plurality of laser diodes arranged linearly And a one-dimensional light modulation unit having a plurality of light modulation means arranged linearly, and a plurality of light beams modulated according to a modulation control signal based on information to be recorded are used. It is formed with an arrangement corresponding to the arrangement of the plurality of light modulating means, that is, an arrangement arranged substantially in a common plane, so that the geometric optical image is reduced to a size smaller than the diffraction limit.
- Non-contact information recording on an optical recording medium can be performed, and the difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting a plurality of light beams is reduced. The utilization of the plurality of light beams is improved.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane Is incident on the optical recording medium, so that the light spots arranged linearly on the optical recording medium are formed.
- the light beam from the second light source unit is used for recording.
- the reproduction of the information recorded on the optical recording medium which is performed assuming that the light is incident on the optical recording medium driven by the medium drive control unit, is complicated in the information reproducing unit. It can be performed relatively easily without signal processing.
- the first light source including a plurality of laser diodes arranged linearly And a one-dimensional light modulation unit having a plurality of light modulation means arranged linearly, and a plurality of light beams modulated according to a modulation control signal based on information to be recorded are used. It is formed with an arrangement according to the arrangement of a plurality of light modulating means, that is, an arrangement arranged substantially in a common plane, and these are obtained with a geometrical optical image substantially under the diffraction limit.
- the tape-shaped optical recording medium that travels should be incident on the tape-shaped optical recording medium so as to form optical spots arranged at a predetermined angle to the traveling direction. Therefore, the gar With the condition that the information can be recorded by forming a recording track with a minimum required number of contacts, non-contact information recording on a tape-shaped optical recording medium can be performed.
- the difficulty in setting and maintaining the positional relationship of the plurality of optical means for reflecting light is reduced, and the utilization rate of the plurality of light beams is improved.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane. Light beam is incident on the tape-shaped optical recording medium,
- the process is performed under the condition that the optical spots arranged linearly on the optical recording medium are formed, for example, a light beam from the second light source unit is driven by the recording medium drive control unit.
- the recording is performed on a tape-shaped optical recording medium, which is performed assuming that the light is incident on the tape-shaped optical recording medium.
- a one-dimensional structure in which a plurality of laser diodes are linearly arranged and arranged.
- a light source unit including a diode array is used, and from the light source unit, a plurality of light beams modulated according to a modulation control signal based on information to be recorded or no light beam is received.
- a plurality of light beams modulated according to a modulation control signal based on information to be recorded or no light beam is received.
- Non-contact information recording on an optical recording medium can be performed in a state where information can be recorded by forming a recorded track, and the positional relationship between a plurality of optical means for transmitting or reflecting a plurality of light beams. The difficulty in setting and maintaining the light beam is reduced, and the utilization of a plurality of light beams is improved.
- the recording of the information to be recorded on the optical recording medium is changed to the information to be recorded.
- a plurality of light beams which are modulated in accordance with a modulation control signal based on the optical recording medium and are arranged substantially in a common plane, are incident on the optical recording medium, and are arranged linearly on the optical recording medium. Since the light spots are formed after the formation of the light spots, a plurality of light beams which are not subjected to the modulation and are arranged substantially in a common plane are generated by the recording medium drive control unit.
- the information recorded on the optical recording medium which is assumed to be incident on the driven optical recording medium, can be reproduced relatively easily without requiring complicated signal processing in the information reproducing section. We can get it.
- a one-dimensional structure in which a plurality of laser diodes are linearly arranged and arranged.
- a light source unit including a diode array is used, and from the light source unit, a plurality of light beams modulated according to a modulation control signal based on information to be recorded or no light beam is received. Multiple light beams are combined into multiple laser diodes
- 'Are formed with an arrangement corresponding to the arrangement of the', that is, an arrangement that is to be arranged substantially in a common plane, and the geometrical optical image is obtained substantially under the diffraction limit.
- the optical spots arranged in a direction at a predetermined angle with respect to the traveling direction are arranged on the tape-shaped optical recording medium which is narrowed down to be in the state and is driven by the recording medium drive control unit and travels. Since it is assumed that the light is incident on the tape-shaped optical recording medium,
- non-contact information recording on a tape-shaped optical recording medium can be performed, and a plurality of light beams can be recorded. Difficulty in setting and maintaining the positional relationship of a plurality of optical means for transmitting or reflecting light is reduced, and the utilization of a plurality of light beams is improved.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- the optical beam is not modulated because the light spot is incident on the tape-shaped optical recording medium to form the optical spots arranged linearly on the tape-shaped optical recording medium.
- a plurality of light beams, which are to be arranged and arranged substantially in a common plane, are incident on a tape-shaped optical recording medium driven and driven by a recording medium drive control unit.
- the information recorded on the optical recording medium can be reproduced relatively easily without the need for complicated signal processing in the information reproducing section.
- a one-dimensional structure in which a plurality of laser diodes are linearly arranged and arranged.
- a light source unit including a diode array and a one-dimensional light modulation unit in which a plurality of light modulation units are linearly arranged are used. From the one-dimensional light modulation unit to the information to be recorded, Multiple light beams modulated according to a modulation control signal based on A plurality of light beams which are not affected by the modulation are formed in an arrangement according to the arrangement of the plurality of light modulating means, that is, in an arrangement which is to be arranged substantially in a common plane.
- a non-contact information recording on an optical recording medium can be performed in a state where information can be recorded by forming a recording track with a minimum required, and a plurality of light beams can be transmitted or reflected. Difficulty in setting and maintaining the positional relationship of the plurality of optical means is reduced, and the utilization rate of the plurality of light beams is improved.
- the recording of information to be recorded on the optical recording medium is modulated according to a modulation control signal based on the information to be recorded, and a plurality of light beams that are arranged and arranged substantially in a common plane Is incident on the optical recording medium, and is linearly arranged on the optical recording medium.
- a primary device in which a plurality of laser diodes are linearly arranged and arranged.
- Information to be recorded from the one-dimensional light modulation unit is used by using a light source unit including an original diode array and a one-dimensional light modulation unit in which a plurality of light modulation means are linearly arranged.
- a plurality of light beams modulated according to a modulation control signal based on the above or a plurality of light beams not subjected to modulation are arranged in an arrangement according to an arrangement of a plurality of light modulating means, that is, substantially. Formed with an array arrangement that will be arranged in a common plane,
- the tape-shaped optical recording medium that is driven and driven by the recording medium drive control unit has the traveling direction.
- contactless information recording can be performed, and the positional relationship between a plurality of optical means for transmitting or reflecting a plurality of light beams can be determined. Difficulty in setting up and maintaining will be reduced, and the utilization of multiple light beams will be improved.
- the recording of the information to be recorded on the tape-shaped optical recording medium is modulated in accordance with a modulation control signal based on the information to be recorded, and is substantially arranged in a common plane.
- a modulation control signal based on the information to be recorded
- the light beam is incident on the tape-shaped optical recording medium, it is performed under the condition that the optical spots arranged linearly on the tape-shaped optical recording medium are formed.
- a plurality of light beams which are not subjected to modulation and are arranged and arranged substantially in a common plane are incident on a tape-shaped optical recording medium which is driven and driven by a recording medium drive control unit.
- the reproduction of the information recorded on the tape-shaped optical recording medium which is performed as described above, can be performed relatively easily without requiring complicated signal processing in the information reproducing unit.
Landscapes
- Physics & Mathematics (AREA)
- Optics & Photonics (AREA)
- Optical Recording Or Reproduction (AREA)
- Optical Head (AREA)
- Indexing, Searching, Synchronizing, And The Amount Of Synchronization Travel Of Record Carriers (AREA)
- Management Or Editing Of Information On Record Carriers (AREA)
Description
Claims
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US10/489,728 US7292518B2 (en) | 2002-07-17 | 2003-07-14 | Apparatus for recording information and apparatus for recording and reproducing information |
DE60326237T DE60326237D1 (de) | 2002-07-17 | 2003-07-14 | Informationsaufzeichnungseinrichtung und informationsaufzeichnungs-/-wiedergabeeinrichtung |
EP03764184A EP1522999B1 (en) | 2002-07-17 | 2003-07-14 | Information recording device and information recording/reproducing device |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2002207880A JP2004054985A (ja) | 2002-07-17 | 2002-07-17 | 情報記録装置及び情報記録再生装置 |
JP2002-207880 | 2002-07-17 |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2004008445A1 true WO2004008445A1 (ja) | 2004-01-22 |
Family
ID=30112830
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/JP2003/008893 WO2004008445A1 (ja) | 2002-07-17 | 2003-07-14 | 情報記録装置及び情報記録再生装置 |
Country Status (7)
Country | Link |
---|---|
US (1) | US7292518B2 (ja) |
EP (1) | EP1522999B1 (ja) |
JP (1) | JP2004054985A (ja) |
CN (1) | CN1306507C (ja) |
AT (1) | ATE423375T1 (ja) |
DE (1) | DE60326237D1 (ja) |
WO (1) | WO2004008445A1 (ja) |
Families Citing this family (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR20090076102A (ko) * | 2008-01-07 | 2009-07-13 | 삼성전자주식회사 | 다채널용 광픽업 및 이를 적용한 다채널 광 기록/재생장치 |
US8248905B2 (en) | 2010-10-15 | 2012-08-21 | General Electric Company | Method of parallel bit-wise holographic data storage source using a parallel light source |
US8254224B2 (en) | 2010-11-18 | 2012-08-28 | General Electric Company | Servoing system for master with parallel tracks in a holographic replication system |
US8154975B1 (en) | 2010-11-18 | 2012-04-10 | General Electric Company | Servoing system for multiple spot registration for holographic replication system |
CN113744766A (zh) * | 2020-05-29 | 2021-12-03 | 华为技术有限公司 | 一种数据读取、写入装置及数据读取、写入方法 |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS52128104A (en) * | 1976-04-20 | 1977-10-27 | Matsushita Electric Ind Co Ltd | Optical multichannel recording method |
JPS618749A (ja) * | 1984-06-21 | 1986-01-16 | Tokyo Electric Co Ltd | 光学記憶方法 |
JPH08321084A (ja) * | 1995-05-24 | 1996-12-03 | Sanyo Electric Co Ltd | 記録媒体のトラッキング方法 |
Family Cites Families (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP0092420A1 (en) * | 1982-04-19 | 1983-10-26 | Xerox Corporation | Information storage systems |
US4520472A (en) * | 1983-02-07 | 1985-05-28 | Rca Corporation | Beam expansion and relay optics for laser diode array |
US4884260A (en) * | 1986-04-23 | 1989-11-28 | Drexler Technology Corporation | Data recording system for optical memory tape |
US4768184A (en) * | 1987-01-23 | 1988-08-30 | General Electric Company | Apparatus and method for minimizing magnification distortion in multi-track optical recording |
US4754446A (en) * | 1987-01-23 | 1988-06-28 | General Electric Company | Optical recording system using refracted write beam for erasing |
JPH06111334A (ja) * | 1992-09-24 | 1994-04-22 | Sony Corp | 円盤状記録媒体用の記録及び/又は再生装置、光検出器及び光ヘッド |
US5472759A (en) * | 1993-12-16 | 1995-12-05 | Martin Marietta Corporation | Optical volume memory |
-
2002
- 2002-07-17 JP JP2002207880A patent/JP2004054985A/ja active Pending
-
2003
- 2003-07-14 EP EP03764184A patent/EP1522999B1/en not_active Expired - Lifetime
- 2003-07-14 US US10/489,728 patent/US7292518B2/en not_active Expired - Fee Related
- 2003-07-14 CN CNB038014289A patent/CN1306507C/zh not_active Expired - Fee Related
- 2003-07-14 AT AT03764184T patent/ATE423375T1/de not_active IP Right Cessation
- 2003-07-14 WO PCT/JP2003/008893 patent/WO2004008445A1/ja active Application Filing
- 2003-07-14 DE DE60326237T patent/DE60326237D1/de not_active Expired - Fee Related
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS52128104A (en) * | 1976-04-20 | 1977-10-27 | Matsushita Electric Ind Co Ltd | Optical multichannel recording method |
JPS618749A (ja) * | 1984-06-21 | 1986-01-16 | Tokyo Electric Co Ltd | 光学記憶方法 |
JPH08321084A (ja) * | 1995-05-24 | 1996-12-03 | Sanyo Electric Co Ltd | 記録媒体のトラッキング方法 |
Also Published As
Publication number | Publication date |
---|---|
JP2004054985A (ja) | 2004-02-19 |
EP1522999A1 (en) | 2005-04-13 |
CN1578979A (zh) | 2005-02-09 |
CN1306507C (zh) | 2007-03-21 |
DE60326237D1 (de) | 2009-04-02 |
EP1522999B1 (en) | 2009-02-18 |
ATE423375T1 (de) | 2009-03-15 |
US20050105444A1 (en) | 2005-05-19 |
US7292518B2 (en) | 2007-11-06 |
EP1522999A4 (en) | 2007-10-17 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US4520472A (en) | Beam expansion and relay optics for laser diode array | |
US20070153344A1 (en) | System and method for recording and reproducing holographic interferogram with optical servo | |
KR100765796B1 (ko) | 참조광 각도 제어 신호 생성 시스템 및 이를 적용한홀로그래픽 정보 기록 및/또는 재생장치 | |
JPS5855567B2 (ja) | ジヨウホウサイセイホウシキ | |
US4520471A (en) | Multi-channel recording/playback optics for laser diode arrays | |
CN101896973A (zh) | 记录/再现全息信息的设备 | |
KR20120039479A (ko) | 광학 디바이스 | |
US7251209B2 (en) | Optical pickup and a wedge beam splitter | |
WO2004008445A1 (ja) | 情報記録装置及び情報記録再生装置 | |
EP0732689B1 (en) | Light detecting device | |
US6377520B2 (en) | Robust and versatile focus/tracking method and system for optical pickup heads | |
US5561654A (en) | Compact write system for optical tape recording | |
US5444224A (en) | Optical information recording/reproducing apparatus | |
US7796486B2 (en) | Optical information reproducing apparatus and optical information recording apparatus using holography | |
US20070041302A1 (en) | Information recording apparatus, and information recording/reproducing apparatus | |
US6373809B1 (en) | Multi-channel optical head for optical recording and reading optical storage data | |
CN115497516A (zh) | 一种全息存储光路系统及其光束校准方法 | |
JP3918666B2 (ja) | テープ状光記録媒体駆動装置 | |
JP2004054982A (ja) | 情報記録装置及び情報記録再生装置 | |
US20070263268A1 (en) | Hologram recording device | |
US6822667B1 (en) | Multi-channel optical recording using VCSEL arrays | |
KR19980027912A (ko) | 광 기록/ 재생장치 | |
JPH06162556A (ja) | 光ディスク装置 | |
US20060245317A1 (en) | Optical head and information recording/reproducing apparatus | |
US6381209B1 (en) | Multi-channel optical head for optical recording and reading optical storage data |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
AK | Designated states |
Kind code of ref document: A1 Designated state(s): CN US |
|
AL | Designated countries for regional patents |
Kind code of ref document: A1 Designated state(s): AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IT LU MC NL PT RO SE SI SK TR |
|
WWE | Wipo information: entry into national phase |
Ref document number: 2003764184 Country of ref document: EP |
|
121 | Ep: the epo has been informed by wipo that ep was designated in this application | ||
WWE | Wipo information: entry into national phase |
Ref document number: 20038014289 Country of ref document: CN |
|
WWE | Wipo information: entry into national phase |
Ref document number: 10489728 Country of ref document: US |
|
WWP | Wipo information: published in national office |
Ref document number: 2003764184 Country of ref document: EP |