CN102255221A - Circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator - Google Patents

Circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator Download PDF

Info

Publication number
CN102255221A
CN102255221A CN 201110101063 CN201110101063A CN102255221A CN 102255221 A CN102255221 A CN 102255221A CN 201110101063 CN201110101063 CN 201110101063 CN 201110101063 A CN201110101063 A CN 201110101063A CN 102255221 A CN102255221 A CN 102255221A
Authority
CN
China
Prior art keywords
frequency
light
doppler
shift frequency
band
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 201110101063
Other languages
Chinese (zh)
Other versions
CN102255221B (en
Inventor
欧阳征标
祁春超
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen University
Original Assignee
Shenzhen University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shenzhen University filed Critical Shenzhen University
Priority to CN2011101010632A priority Critical patent/CN102255221B/en
Publication of CN102255221A publication Critical patent/CN102255221A/en
Application granted granted Critical
Publication of CN102255221B publication Critical patent/CN102255221B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Optical Modulation, Optical Deflection, Nonlinear Optics, Optical Demodulation, Optical Logic Elements (AREA)

Abstract

The invention provides a circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator which comprises a laser, a first circulator, a beam splitter, a Doppler frequency modulator frequency shift based circulating frequency shift link, first beam synthesizer, a photoisolator, a nonlinear element and a terahertz wave filter, wherein light output by the laser is split into a first path of light and a second path of light by the beam splitter after passing through the first circulator, the first path of light is used as reference light and the second path of light is input to the circulating frequency shift link to generate circulating frequency shift light, the first beam synthesizer is used for carrying out difference frequency on the reference light and the circulating frequency shift light by the photoisolator in the nonlinear element after the reference light and the circulating frequency shift light are synthesized and then coherent terahertz waves are generated through filtering radiation of the terahertz wave filter. The circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator provided by the invention has the advantages of small volume, less quantity and easiness in integration of optical elements, large tuning range, high tuning efficiency and high terahertz wave generation efficiency.

Description

Circulation Doppler shift frequency nonlinear difference formula wide-band tuning THz wave generator
Technical field
The present invention relates to the wide-band tuning THz wave device that a kind of difference frequency mode produces, relate in particular to a kind of wide-band tuning THz wave light source based on Doppler frequency modulator shift frequency, circulation shift frequency and difference frequency principle.
Background technology
Terahertz (THz, 1THz=10 12Hz) ripple is meant that operating frequency is in the electromagnetic wave in 0.1~10THz scope.Why THz wave can cause the research interest that the scientific worker is dense, it is not electromagnetic radiation rarely known by the people because it is mysterious, main is that these unique character have been given Terahertz science application prospects just because it has the character of a lot of uniquenesses.The character of the uniqueness of THz wave mainly shows: perspectivity, fail safe, spectral resolving power.Terahertz emission has good penetrability to a lot of dielectric materials and nonpolar liquid, therefore can carry out perspective imaging to nontransparent object, in addition since the wavelength of Terahertz greater than the yardstick of suspension smoke particle in the air, the Rayleigh scattering loss is minimum, so can penetrate flue dust and thick fog preferably, be the perfect light source of imaging in fire rescue or the travel fatigue environmental monitoring.Compare the photon energy that X ray has kiloelectron-volt, the photon energy of terahertz emission has only the milli electronvolt, this energy is all lower than the bond energy of various chemical bonds, so ionization reaction can not take place, promptly can not destroy molecular structure of compounds, therefore can be applied to places such as safety check and biological detection, this is the embodiment of the fail safe of Terahertz, a large amount of molecules, especially the transition of the vibration of organic molecule and rotation is composed, all be in the Terahertz spectral range, thereby can utilize the spectral resolution characteristic to realize the analysis of object appearance and constituent.
Because THz wave has above-mentioned important application prospects, existing in the world at present a plurality of groups have carried out the scientific research in relevant THz wave field, especially about the research of the generation aspect of tunable relevant THz wave.In Korea S, N.J.Kim group has realized in 2009 based on dual wavelength distributed feedback laser diode (Distributed Feedback Laser Diodes, DFB LDs) the tunable continuous wave terahertz emission of pumping, and expand 0.5THz in the broadness of tuning with THz wave in 2010.In Canada, S.L.Pan group has realized in 2009 based on dual wavelength erbium-doped fiber laser (Erbium-Doped Fiber Laser, adjustable microwave signal output EDFL).In the U.S., Y.J.Ding group has realized that in 2010 (Difference Frequency DF) has produced compact, portable terahertz emission source, and its volume can narrow down to 30.48 * 15.24 * 10.16cm based on the dual wavelength difference frequency 3, unique deficiency be: untunable.In Germany, the I.Breunig group of Bonn University constantly improved based on inner chamber optical parametric oscillator (Internal Cavity Optical Parametric Oscillator during 2007 to 2010, ICOPO) tunable THz wave produces scheme, final its broadness of tuning reaches 2THz, but the temperature stability of heating furnace becomes the key issue of the accurate phase matched of influence (QPM).In France, the J.Mangeney group of French research establishment (CNRS) is devoted to utilize some nonlinear material (as In recent years always 0.53Ga 0.47As) optical mixer (PM) produces the research of tunable continuous THz wave, and maximum broadness of tuning is 0.9THz.In Japan, H.Ito group utilizes UTC-PD (Uni-Traveling-Carrier Photodioed) optical mixer to realize the generation of continuous THz wave, and highest frequency can reach 1.5THz.
The mode that obtains THz wave is a lot, and principle is also different, and the mode that produces tunable relevant THz wave at present roughly can be divided into three major types.The first kind is based on the tunable relevant terahertz emission of research of dual wavelength pumping source and design; Second class is that the pumping source wavelength is fixed, and produces the research and the design of THz wave based on the ICOPO of non-linear cascade process.The 3rd class is based on the tunable terahertz emission source of PM.For the first kind, relate generally to research of tunable relevant terahertz emission source and design at present based on DFB LDs, EDFLs, DF dual wavelength pumping source.The Terahertz tuning range of utilizing DFB LDs to produce is narrower, generally less than 0.5THz; Though the Terahertz tuning range of utilizing the EDFLs mode to produce can reach 0.5THz, its structure is quite complicated; Though and the Terahertz tuning range broad that utilizes the DF mode to produce can reach 20THz, the terahertz emission source apparatus of this mode is quite huge, although 2010 years, Y.J.Ding has realized 30.48 * 15.24 * 10.16cm 3Compact terahertz emission source, however untunable.For second class, though its broadness of tuning can reach 2THz at present, owing to the temperature stability reason, satisfying accurate phase-matching condition is not the part nothing the matter, thereby makes that tuning efficient is lower.For the 3rd class, at present high tuning width is 0.9THz, and obviously its broadness of tuning is narrower.
In a word, said method or broadness of tuning are narrower, or bulky, or tuning efficient is low, or conversion efficiency is low.
Summary of the invention
Technical problem to be solved by this invention provides a kind of compactness, portable, be easy to integrated, the wide-band tuning THz wave device that the difference frequency mode that broad tuning and tuning efficient are high produces.
The technical scheme that solves the technology of the present invention problem is: a kind of circulation Doppler shift frequency nonlinear difference formula wide-band tuning THz wave generator is provided, and it comprises laser, first circulator, beam splitter, based on circulation shift frequency link, first beam synthesis, optical isolator, non-linear element and the Terahertz filter plate of Doppler frequency modulator shift frequency; The light of described laser output is divided into the first via and the second tunnel by beam splitter after through first circulator, the first via is a reference light, the second the tunnel is input to and produces circulation shift frequency light after the described circulation shift frequency link, described reference light and circulation shift frequency light are after first beam synthesis closes bundle, carry out difference frequency through optical isolator in non-linear element again, filtering gives off relevant THz wave through the Terahertz filter plate at last.
Described laser is semiconductor laser, gas laser, solid state laser or the fiber laser of operation wavelength in the 600nm-2000nm wave band.
Described first circulator is a three-port circulator, and its first port connects laser, and second port connects beam splitter, and the 3rd port connects absorbing load, the reverberation of described absorbing load absorbing light beam splitter.
Described non-linear element is the periodic structure that nonlinear material and linear material are alternately arranged, or alternately arrange the optical superlattice structure that constitutes by nonlinear material and linear material, or alternately arrange the slow variable period structure that constitutes by nonlinear material and linear material, or arrange Fibonacci (Fibonacci) structure that constitutes by nonlinear material and linear material, it satisfies the desired phase-matching condition scope of the pairing nonlinear difference process of Terahertz output wave frequency tuning range of system.
Described Terahertz filter plate is logical transmission-type filter of Terahertz band or Terahertz band resistance reflecting filter; For the logical transmission-type filter of band, transmitted wave is output as THz wave, and the ripple of other wavelength can be reflected by this filter; For band resistance reflecting filter, reflected wave is output as THz wave, and the ripple of other wavelength can see through this filter.
The optimum value of the closed loop gain coefficient of described circulation shift frequency link based on Doppler frequency modulator shift frequency is 1, and inferior good value is other positive integer value beyond 1, and good once more value is the reciprocal value of other positive integer beyond 1.
The splitting ratio optimum value of described beam splitter is 1, inferior good value is the reciprocal value of other positive integer beyond 1, good once more value is other positive integer value beyond 1, and the splitting ratio of described beam splitter is a reference light power divided by the input optical power based on the circulation shift frequency link of Doppler frequency modulator shift frequency.
Described circulation shift frequency link based on Doppler frequency modulator shift frequency comprises second beam synthesis, Doppler frequency modulator, plane mirror, second circulator, the first reaction type Bragg grating, tunable optic filter, image intensifer and light amplitude fading device, and described image intensifer and light amplitude fading device are formed the image intensifer of Gain Adjustable.
Described Doppler frequency modulator comprises a galvanometer, and the mechanical oscillation of described galvanometer are by solenoid actuated, or by Piezoelectric Ceramic, or is driven by dither motor.
Described second circulator is a three-port circulator, its first port receives the reverberation of plane mirror, second port connects the first reaction type Bragg grating, and the 3rd port connects absorbing load, and described absorbing load absorbs the reverberation of the first reaction type Bragg grating.
Described operational frequency bandwidth based on each parts, first beam synthesis, optical isolator in the circulation shift frequency link of Doppler frequency modulator shift frequency is not less than the highest frequency of the THz wave of output.
Described first circulator, beam splitter, consistent with the service band of laser based on the service band of each parts, first beam synthesis, optical isolator in the circulation shift frequency link of Doppler frequency modulator shift frequency.
Described tunable optic filter is a narrow band filter, it allows a narrow band light to output to the input of first beam synthesis, and the light of other frequency is reflexed to the input of image intensifer, the difference of the arrowband output light frequency of described tunable optic filter and the output light frequency of described laser equals needed Terahertz wave frequency, and the frequency-tuning range of the THz wave of output is not more than the arrowband output light frequency tuning range of tunable optic filter.
Described tunable optic filter is the 1-D photon crystal tunable optic filter or the Bragg grating-completely reflecting mirror assembly of band defect layer.
The forbidden photon band district of described 1-D photon crystal is not less than the frequency tuning range of the THz wave of system's output, described 1-D photon crystal comprises the adjustable defect layer of one deck refractive index, the regulative mode of the refractive index of described defect layer comprises that electricity causes and sells off, mangneto is sold off, sound causes to be sold off, photic selling off, power causes sells off or thermic is sold off, described 1-D photon crystal has a defective mould, described defective mould changes with the change of refractive of described defect layer, the surface of described 1-D photon crystal tunable optic filter and its incident wave line of propagation are in angle of 45 degrees, the arrowband transmitted wave of described 1-D photon crystal tunable optic filter enters into the input of first beam synthesis, and the reverberation of described 1-D photon crystal tunable optic filter enters into the input of image intensifer (47).
Described Bragg grating-completely reflecting mirror assembly comprise one with the incident light direction second reaction type Bragg grating and reflecting surface and incident light direction completely reflecting mirror in angle of 45 degrees in angle of 45 degrees, between described second reaction type Bragg grating and completely reflecting mirror is an air or dielectric layer, the narrowband reflection light of the described second reaction type Bragg grating is the arrowband output light of this tunable optic filter, the narrowband reflection light of the described second reaction type Bragg grating enters in first beam synthesis, the reverberation of described completely reflecting mirror enters into the input of image intensifer (47) along another light path, the lattice parameter of the described second reaction type Bragg grating passes through piezoelectric effect, magnetostrictive effect, the effect of expanding with heat and contract with cold, electricity causes to be sold off, mangneto is sold off, sound causes to be sold off, photic selling off, power causes sells off or the thermic mode of selling off is regulated, with the adjusting of the narrowband reflection light frequency of realizing the described second reaction type Bragg grating.
The present invention's beneficial effect compared with prior art is:
(1) compact, portable.Described circulation Doppler shift frequency nonlinear difference formula wide-band tuning THz wave generator utilizes the volume after the commercially available assembly assembling to be no more than 40 * 10 * 35cm 3, weight is no more than 8kg.
(2) light path is simple.In whole device, having only beam splitter, plane mirror and filter plate is movable optical element, and other parts are all fixing, and preferred beam synthesis is a fiber coupler.This device makes things convenient for light integrated.
(3) tuning range or broadness of tuning are big.Be that centre wavelength (for example, 1550nm) is subjected to the bandwidth constraints of tunable optic filter and image intensifer.For bandwidth of operation is tunable optic filter and the image intensifer of 40nm, can obtain the broadness of tuning of 5THz THz wave.This broadness of tuning than most of terahertz emission source in the past is all big.Along with the increase of the broadness of tuning of tunable optic filter and bandpass amplifier, the wavelength regulation scope of output THz wave can proportional increase.
(4) tuning efficient height.The tuning main Doppler frequency modulator that passes through in this scheme is realized frequency shifts, when the signal frequency after regulating reaches the selecting frequency of tunable optic filter, the narrow band light output of tunable optic filter is just exported the input of a narrow band light to first beam synthesis, otherwise flashlight is reflected and enters image intensifer, after amplifying, feed back to the input of Doppler frequency modulator again, carry out frequency shifts once more through the Doppler frequency modulator.This process does not need artificial or computer intervention, and its tuning efficient is quite high.
(5) Terahertz produces the efficient height.Owing to have the Gain Adjustable part in the circulation shift frequency joint, so the power output of shift frequency light can be than higher, this efficient than any shift frequency mode in the past is all high, and then the conversion efficiency of terahertz emission is also than higher.
Description of drawings
Fig. 1 is the circulate system configuration schematic diagram of Doppler's shift frequency nonlinear difference formula wide-band tuning THz wave generator of the present invention.
Fig. 2 is the circulate schematic diagram of first kind of execution mode of Doppler's shift frequency nonlinear difference formula wide-band tuning THz wave generator of the present invention.
Fig. 3 is the circulate schematic diagram of first kind of execution mode of Doppler's shift frequency nonlinear difference formula wide-band tuning THz wave generator of the present invention, and the slanted bar line in the short dash line frame is wherein filled frame and black and filled frame and be respectively reaction type Bragg grating and completely reflecting mirror.
Fig. 4 is the circulate schematic diagram of the third execution mode again of Doppler's shift frequency nonlinear difference formula wide-band tuning THz wave generator of the present invention.
Fig. 5 is the circulate difference frequency principle schematic of Doppler's shift frequency nonlinear difference formula wide-band tuning THz wave generator of the present invention.
Embodiment
Below in conjunction with accompanying drawing and embodiment the present invention is described in further detail:
The invention provides a kind of circulation Doppler shift frequency nonlinear difference formula wide-band tuning THz wave generator, as shown in Figure 1, it comprise laser 1, first circulator, beam splitter 3, based on circulation shift frequency link 4, first beam synthesis, optical isolator 6, non-linear element 7 and the Terahertz filter plate 8 of Doppler frequency modulator shift frequency.The light of laser 1 output is divided into the first via and the second tunnel by beam splitter 3 after through first circulator, the first via is a reference light, the second the tunnel is input to described circulation shift frequency link 4 backs produces circulation shift frequency light, described reference light and circulation shift frequency light are after first beam synthesis closes bundle, carry out difference frequency through optical isolator 6 in non-linear element 7 again, 8 filtering give off relevant THz wave through the Terahertz filter plate at last.
Laser 1 is semiconductor laser, gas laser, solid state laser or the fiber laser of operation wavelength in the 600nm-2000nm wave band.First circulator is a three-port circulator, and its first port connects laser 1, the second port and connects beam splitter 3, the three ports connection absorbing load, the reverberation of described absorbing load absorbing light beam splitter 3.
Circulation shift frequency link 4 based on Doppler frequency modulator shift frequency comprises second beam synthesis, Doppler frequency modulator 42, plane mirror 43, second circulator, the first reaction type Bragg grating 45, tunable optic filter 46, image intensifer 47 and light amplitude fading device 48, and image intensifer 47 and light amplitude fading device 48 are formed the image intensifer of Gain Adjustable.First circulator, beam splitter 3, consistent with the service band of laser 1 based on the service band of each parts, first beam synthesis, optical isolator 6 in the circulation shift frequency link 4 of Doppler frequency modulator shift frequency.
Optimum value based on the closed loop gain coefficient (or claiming entire gain coefficient) of the circulation shift frequency link 4 of Doppler frequency modulator shift frequency is 1, and inferior good value is other positive integer value beyond 1, and good once more value is the reciprocal value of other positive integer beyond 1.Equal the amplitude of reference light based on the amplitude optimum value of the output light of the circulation frequency displacement link 4 of Doppler's modulator shift frequency, the splitting ratio optimum value that is beam splitter 3 is 1, inferior good value is the reciprocal value of other positive integer beyond 1, good once more value is other positive integer value beyond 1, also is the splitting ratio of beam splitter 3 and product optimum value based on the closed loop gain coefficient of the circulation shift frequency link of Doppler frequency modulator shift frequency is 1.The splitting ratio of beam splitter 3 equals reference light power divided by the input power based on the circulation shift frequency link 4 of Doppler frequency modulator shift frequency.
Doppler frequency modulator 42 comprises a galvanometer, and the mechanical oscillation of described galvanometer are by solenoid actuated, or by Piezoelectric Ceramic, or is driven by dither motor.Because Doppler effect changes frequency, thus described galvanometer performance frequency modulation function, and the direction of propagation of light becomes less angle with the direction of motion of galvanometer.The frequency displacement principle of Doppler frequency modulator 42 is: the electromagnetic wave that described laser 1 sends is injected on the galvanometer of Doppler frequency modulator 42 after through second beam synthesis, when the direction of motion of galvanometer is opposite with electromagnetic transmission direction, frequency increases, otherwise frequency reduces; Every through once circulation, output frequency is injecting the flashlight frequency f 0Change Δ f on the basis, through behind the shift frequency repeatedly, the light wave of tunable optic filter 46 output HFSs, and the light wave of low frequency part is reflexed to the input of image intensifer 47 feeds back to second beam synthesis and carries out next time frequency shifts after amplifier amplifies.Through behind the shift frequency repeatedly, finally can realize THz wave output.If f 0The frequency of laser is injected in expression, υ represents the movement velocity of the galvanometer of Doppler frequency modulator 42, c represents the light velocity, and θ represents the angle of the direction of motion of the galvanometer of electromagnetic wave propagation direction and Doppler frequency modulator 42, and the half width that then can be formulated after the frequency modulation(FM) is
Δf = υ c f 0 cos θ
After then light passes through Doppler frequency modulator 42 the N time, the frequency change of N Δ f is arranged.
This shows, in circulation shift frequency link based on Doppler frequency modulator 42, obtain the frequency shift amount of N Δ f behind N circulation shift frequency of light wave process, as long as this frequency shift amount does not make light frequency reach the selecting frequency of tunable optic filter 46, then light wave can be fed back constantly circulation in the circulation shift frequency link, till frequency shift amount makes light frequency reach the selecting frequency of filter.
Described second circulator is a three-port circulator, its first port receives the reverberation of plane mirror 43, second port connects the first reaction type Bragg grating, 45, the three ports and connects absorbing load, and described absorbing load absorbs the reverberation of the first reaction type Bragg grating 45.Described operational frequency bandwidth based on each parts, first beam synthesis, optical isolator 6 and non-linear element 7 and Terahertz filter plate 8 in the circulation shift frequency link 4 of Doppler frequency modulator shift frequency is not less than the highest frequency of the THz wave of output, and promptly operational frequency bandwidth is not less than the maximum frequency shift scope of described circulation shift frequency link 4 based on Doppler frequency modulator shift frequency.
Tunable optic filter 46 is a narrow band filter, it allows a narrow band light to output to the input of first beam synthesis, and the light of other frequency is reflexed to the input of image intensifer 47, the difference of the arrowband output light frequency of described tunable optic filter 46 and the output light frequency of described laser 1 equals needed Terahertz wave frequency, the Terahertz wave frequency of output realizes that by the arrowband output light frequency of regulating tunable optic filter 46 frequency-tuning range of THz wave is not more than the arrowband output light frequency tuning range of tunable optic filter 46.
Preferably, tunable optic filter 46 is the 1-D photon crystal tunable optic filter (as shown in Figure 2) or the Bragg grating-completely reflecting mirror assembly (as shown in Figure 3) of band defect layer; The forbidden photon band district of described 1-D photon crystal is not less than the frequency tuning range of the THz wave of system's output, described 1-D photon crystal comprises the adjustable defect layer of one deck refractive index, the regulative mode of the refractive index of described defect layer comprise electricity cause sell off, mangneto is sold off, sound cause sell off, photicly sell off, power causes and sells off or thermic is sold off, described 1-D photon crystal has a defective mould, described defective mould changes with the change of refractive of described defect layer, realizes the function of tunable filtering.Preferably, the surface of described 1-D photon crystal tunable optic filter and its incident wave line of propagation are in angle of 45 degrees, the arrowband transmitted wave of described 1-D photon crystal tunable optic filter enters into the input of first beam synthesis, and the reverberation of described 1-D photon crystal tunable optic filter enters into the input of image intensifer 47; Described Bragg grating-completely reflecting mirror assembly comprise one with the incident light direction second reaction type Bragg grating and reflecting surface and incident light direction completely reflecting mirror in angle of 45 degrees in angle of 45 degrees, between described second reaction type Bragg grating and completely reflecting mirror is an air or dielectric layer, the narrowband reflection light of the described second reaction type Bragg grating is the arrowband output light of this tunable optic filter, the narrowband reflection light of the described second reaction type Bragg grating enters in first beam synthesis, the reverberation of described completely reflecting mirror enters into the input of image intensifer 47 along another light path, the lattice parameter of the described second reaction type Bragg grating passes through piezoelectric effect, magnetostrictive effect, the effect of expanding with heat and contract with cold, electricity causes to be sold off, mangneto is sold off, sound causes to be sold off, photic selling off, power causes sells off or the thermic mode of selling off is regulated, with the adjusting of the narrowband reflection light frequency of realizing the described second reaction type Bragg grating.
The difference frequency principle: as shown in Figure 5, it is the parametric process of three-wave interaction that optical difference frequency produces; Frequency is respectively ω 1And ω 2Pump light in non-linear element 7, interact, the parameter light frequency of generation is the difference ω of this two bundles pump light frequency 12As ω of every consumption 1Photon must produce a ω simultaneously 2Photon, these three frequencies must satisfy energy conservation relation ω 312In the difference frequency process, the ω that frequency is higher 1Light is consumed, the ω that frequency is lower 2Light will be exaggerated.If produce the difference frequency field effectively, polarized wave must be identical with electromagnetic phase velocity, and promptly interactional three plane waves must satisfy phase-matching condition Δ k=k in the non-linear element 1-k 2-k 3In order to realize the output of wide-band tuning THz wave, need wide phase matched scope, by the periodic structure of alternately arranging by nonlinear material and linear material, or alternately arrange the optical superlattice structure that constitutes by nonlinear material and linear material, or alternately arrange the slow variable period structure that constitutes by nonlinear material and linear material, or, can obtain the desired phase-matching condition scope of the pairing nonlinear difference process of Terahertz output wave frequency tuning range of system by Fibonacci (Fibonacci) structure that nonlinear material and linear material arrangement constitute.
Be each part and the running parameter thereof of a kind of embodiment below.Laser 1 is selected 1550nm super-narrow line width continuous conductor laser for use, the operation wavelength of this laser in the time of 25 ℃ is 1550nm, and power output is 5mW, continuous operation mode, maximum line width is 50kHz, and the output optical fibre type is SMF-28 monomode fiber (9/125 μ m).Doppler frequency modulator 42 has a reflection galvanometer, and this galvanometer can directly be driven by solenoid actuated or Piezoelectric Ceramic or dither motor, and its volume is minimum.The broadness of tuning of selected 46 pairs of centre wavelengths of tunable optic filter reaches 40nm, and (1528nm~1610nm), the insertion loss is 4.0dB, and the volume of this filter is 24 * 8.8 * 35cm almost to have covered whole C-band 3The bandwidth of operation of selected image intensifer 47 is 40nm, has covered whole C-band.Selected beam splitter 3 is 10/90 optical element of response 1550nm wavelength, 10 expression reference light parts wherein, 90 expression flashlight parts.The first selected circulator, second circulator are to connect the optics of inhaling carrier load, play the light isolation effect, simultaneously carrier load is inhaled in the light utilization that reflects and absorbed, this device not only plays the light isolation but also plays environmental-protection function, and its response wave length is near 1550nm.Selected 45 couples of carrier wavelength 1550nm of the first reaction type Bragg grating play the reflection inhibitory action.The first selected beam synthesis, second beam synthesis are for responding the fiber coupler of 1550nm wavelength.Near the high reflection of the light of wavelength 43 couples of 1550nm of the galvanometer of selected Doppler frequency modulator 42 and plane mirror.Selected non-linear element 7 is for becoming the periodic polarized lithium columbate crystal of inclined (PPLN) slowly, and Terahertz filter plate 8 is the resin material of response terahertz wave band, total reflection or total transmissivity reference light and shift frequency light.
Beam splitter 3 is divided into two-way with the 1550nm laser of optical fiber output, one the tunnel as reference light, another road is as the modulation signal light of Doppler frequency modulator 42, externally described galvanometer changes the signal light frequency by Doppler effect under the driving of equipment, the signal light frequency is offset, when the signal light frequency reaches the selecting frequency of tunable optic filter 46, the narrow band light output of tunable optic filter is just exported the input of a narrow band light to first beam synthesis, otherwise flashlight can be reflected to the input of image intensifer 47 along another light path, enter second beam synthesis through after the light amplification, feed back to once more and carry out frequency shifts in the Doppler frequency modulator 42.This frequency shifts process constantly repeats, the final frequency shifts of size arbitrarily that obtains, and this is one of key advantages of this programme.The narrow band signal light of reference light and tunable optic filter 46 outputs produces THz wave through first beam synthesis and optical isolator 6 backs with tilting PPLN crystal interaction difference frequency.When regulating the frequencies of transmission of tunable optic filter, can obtain broadness of tuning is the relevant THz wave of 5THz.
In order to guarantee amplitude coherent superposition such as reference light and shift frequency light, connect amplitude fading device 48 at the output of image intensifer 47.In addition, adopting under the situation of inserting less Doppler frequency modulator 42 of loss and tunable optic filter 46, then need not use image intensifer 47, the narrow band light output that only needs amplitude fading device 48 to be received tunable optic filter 46 gets final product, as shown in Figure 4.
Wide-band tuning Terahertz generator volume provided by the invention is little, and optical element is few thereby easy of integration, and tuning range is big, tuning efficient height, and Terahertz produces the efficient height.
The above the present invention all has improvements in embodiment and range of application, not should be understood to limitation of the present invention.

Claims (16)

1. circulation Doppler shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: it comprises laser (1), first circulator, beam splitter (3), circulation shift frequency link (4) based on Doppler frequency modulator shift frequency, first beam synthesis, optical isolator (6) and non-linear element (7) and Terahertz filter plate (8), the light of described laser (1) output is divided into the first via and the second tunnel by beam splitter (3) after through first circulator, the first via is a reference light, the second the tunnel is input to described circulation shift frequency link (4) back produces circulation shift frequency light, first beam synthesis after optical isolator (6) carries out difference frequency in non-linear element (7), passes through described reference light and circulation shift frequency combiner then Terahertz filter plate (8) filtering and gives off relevant THz wave.
2. according to the described circulation Doppler of claim 1 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described laser (1) is semiconductor laser, gas laser, solid state laser or the fiber laser of operation wavelength in the 600nm-2000nm wave band.
3. according to the described circulation Doppler of claim 1 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described first circulator is a three-port circulator, its first port connects laser (1), second port connects beam splitter (3), the 3rd port connects absorbing load, the reverberation of described absorbing load absorbing light beam splitter (3).
4. according to the described circulation Doppler of claim 1 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described non-linear element (7) replaces the periodic structure of arrangement for nonlinear material and linear material, or alternately arrange the optical superlattice structure that constitutes by nonlinear material and linear material, or alternately arrange the slow variable period structure that constitutes by nonlinear material and linear material, or arrange Fibonacci (Fibonacci) structure that constitutes by nonlinear material and linear material, it satisfies the desired phase-matching condition scope of the pairing nonlinear difference process of Terahertz output wave frequency tuning range of system.
5. according to the described circulation Doppler of claim 1 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described Terahertz filter plate (8) is logical transmission-type filter of Terahertz band or Terahertz band resistance reflecting filter; For the logical transmission-type filter of band, transmitted wave is output as THz wave, and the ripple of other wavelength can be reflected by this filter; For band resistance reflecting filter, reflected wave is output as THz wave, and the ripple of other wavelength can see through this filter.
6. according to the described circulation Doppler of claim 1 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: the optimum value of the closed loop gain coefficient of described circulation shift frequency link (4) based on Doppler frequency modulator shift frequency is 1, inferior good value is other positive integer value beyond 1, and good once more value is the reciprocal value of other positive integer beyond 1.
7. according to the described circulation Doppler of claim 1 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: the splitting ratio optimum value of described beam splitter (3) is 1, inferior good value is the reciprocal value of other positive integer beyond 1, good once more value is other positive integer value beyond 1, and the splitting ratio of described beam splitter (3) is a reference light power divided by the input optical power based on the circulation shift frequency link (4) of Doppler frequency modulator shift frequency.
8. according to the described circulation Doppler of claim 1 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described circulation shift frequency link (4) based on Doppler frequency modulator shift frequency comprises second beam synthesis, Doppler frequency modulator (42), plane mirror (43), second circulator, the first reaction type Bragg grating (45), tunable optic filter (46), image intensifer (47) and light amplitude fading device (48), and described image intensifer (47) and light amplitude fading device (48) are formed the image intensifer of Gain Adjustable.
9. according to the described circulation Doppler of claim 8 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described Doppler frequency modulator (42) comprises a galvanometer, the mechanical oscillation of described galvanometer are by solenoid actuated, or by Piezoelectric Ceramic, or drive by dither motor.
10. according to the described circulation Doppler of claim 8 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described second circulator is a three-port circulator, its first port receives the reverberation of plane mirror (43), second port connects the first reaction type Bragg grating (45), the 3rd port connects absorbing load, and described absorbing load absorbs the reverberation of the first reaction type Bragg grating (45).
11. according to the described circulation Doppler of claim 8 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described operational frequency bandwidth based on each parts, first beam synthesis, optical isolator (6) in the circulation shift frequency link (4) of Doppler frequency modulator shift frequency is not less than the highest frequency of the THz wave of output.
12., it is characterized in that: described first circulator, beam splitter (3), consistent with the service band of laser (1) based on the service band of each parts, first beam synthesis, optical isolator (6) in the circulation shift frequency link (4) of Doppler frequency modulator shift frequency according to the described circulation Doppler of claim 8 shift frequency nonlinear difference formula wide-band tuning THz wave generator.
13. according to the described circulation Doppler of claim 8 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described tunable optic filter (46) is a narrow band filter, it allows the narrow band light of a frequency adjustable to output to the input of first beam synthesis, and the light of other frequency is reflexed to the input of image intensifer (47), the difference of the arrowband output light frequency of described tunable optic filter (46) and the output light frequency of described laser (1) equals needed Terahertz wave frequency, and the frequency-tuning range of the THz wave of output is not more than the arrowband output light frequency tuning range of tunable optic filter (46).
14. according to the described circulation Doppler of claim 13 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described tunable optic filter (46) is the 1-D photon crystal tunable optic filter or the Bragg grating-completely reflecting mirror assembly of band defect layer.
15. according to the described circulation Doppler of claim 14 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: the forbidden photon band district of described 1-D photon crystal is not less than the frequency tuning range of the THz wave of system's output, described 1-D photon crystal comprises the adjustable defect layer of one deck refractive index, the regulative mode of the refractive index of described defect layer comprises that electricity causes and sells off, mangneto is sold off, sound causes to be sold off, photic selling off, or thermic is sold off, described 1-D photon crystal has a defective mould, described defective mould changes with the change of refractive of described defect layer, the surface of described 1-D photon crystal tunable optic filter and its incident wave line of propagation are in angle of 45 degrees, the arrowband transmitted wave of described 1-D photon crystal tunable optic filter enters into the input of first beam synthesis, and the reverberation of described 1-D photon crystal tunable optic filter enters into the input of image intensifer (47).
16. according to the described circulation Doppler of claim 14 shift frequency nonlinear difference formula wide-band tuning THz wave generator, it is characterized in that: described Bragg grating-completely reflecting mirror assembly comprise one with the incident light direction second reaction type Bragg grating and reflecting surface and incident light direction completely reflecting mirror in angle of 45 degrees in angle of 45 degrees, between described second reaction type Bragg grating and completely reflecting mirror is an air or dielectric layer, the narrowband reflection light of the described second reaction type Bragg grating is the arrowband output light of this tunable optic filter, the narrowband reflection light of the described second reaction type Bragg grating enters in first beam synthesis, the reverberation of described completely reflecting mirror enters into the input of image intensifer (47) along another light path, the lattice parameter of the described second reaction type Bragg grating passes through piezoelectric effect, magnetostrictive effect, the effect of expanding with heat and contract with cold, electricity causes to be sold off, mangneto is sold off, sound causes to be sold off, photic selling off, power causes sells off or the thermic mode of selling off is regulated, with the adjusting of the narrowband reflection light frequency of realizing the described second reaction type Bragg grating.
CN2011101010632A 2011-04-21 2011-04-21 Circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator Expired - Fee Related CN102255221B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011101010632A CN102255221B (en) 2011-04-21 2011-04-21 Circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011101010632A CN102255221B (en) 2011-04-21 2011-04-21 Circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator

Publications (2)

Publication Number Publication Date
CN102255221A true CN102255221A (en) 2011-11-23
CN102255221B CN102255221B (en) 2012-08-15

Family

ID=44982274

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011101010632A Expired - Fee Related CN102255221B (en) 2011-04-21 2011-04-21 Circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator

Country Status (1)

Country Link
CN (1) CN102255221B (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104332803A (en) * 2014-10-16 2015-02-04 中国电子科技集团公司第五十研究所 Narrow linewidth terahertz detector
CN104330159A (en) * 2014-10-16 2015-02-04 中国电子科技集团公司第五十研究所 Terahertz frequency domain spectrometer
CN107453189A (en) * 2017-09-25 2017-12-08 中国工程物理研究院激光聚变研究中心 A kind of thz laser device system
CN108761487A (en) * 2018-07-13 2018-11-06 中国电子科技集团公司第二十六研究所 A kind of big bandwidth laser windfinding radar system

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6723991B1 (en) * 2000-10-20 2004-04-20 Imra America, Inc. Single-shot differential spectroscopy and spectral-imaging at submillimeter wavelengths
CN101408708A (en) * 2008-11-26 2009-04-15 天津大学 Pumping optical multiplexing high-efficiency generating high power THz radiation pulse source

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6723991B1 (en) * 2000-10-20 2004-04-20 Imra America, Inc. Single-shot differential spectroscopy and spectral-imaging at submillimeter wavelengths
CN101408708A (en) * 2008-11-26 2009-04-15 天津大学 Pumping optical multiplexing high-efficiency generating high power THz radiation pulse source

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104332803A (en) * 2014-10-16 2015-02-04 中国电子科技集团公司第五十研究所 Narrow linewidth terahertz detector
CN104330159A (en) * 2014-10-16 2015-02-04 中国电子科技集团公司第五十研究所 Terahertz frequency domain spectrometer
CN104330159B (en) * 2014-10-16 2016-08-24 中国电子科技集团公司第五十研究所 A kind of Terahertz frequency domain spectra instrument
CN107453189A (en) * 2017-09-25 2017-12-08 中国工程物理研究院激光聚变研究中心 A kind of thz laser device system
CN107453189B (en) * 2017-09-25 2023-06-02 中国工程物理研究院激光聚变研究中心 Terahertz laser system
CN108761487A (en) * 2018-07-13 2018-11-06 中国电子科技集团公司第二十六研究所 A kind of big bandwidth laser windfinding radar system
CN108761487B (en) * 2018-07-13 2024-02-23 中国电子科技集团公司第二十六研究所 Large-bandwidth laser wind-finding radar system

Also Published As

Publication number Publication date
CN102255221B (en) 2012-08-15

Similar Documents

Publication Publication Date Title
CN102255222B (en) Broadband tuning teraHertz wave generator based on modulator frequency shift and cyclic frequency shift
CN102244335B (en) Broad tuning terahertz wave generator based on Doppler frequency modulator cyclic frequency shift
CN102244334B (en) Broadband tuning terahertz wave generator based on ultrasonic grating frequency shift and cyclic frequency shift
CN102255223B (en) Circular modulating frequency-shifting nonlinear frequency-differing type broadband tuning terahertz wave generator
JP5023462B2 (en) THz wave generator
CN108183387B (en) Optical parametric oscillator system for laser
Shen et al. All-optical generation of microwave and millimeter wave using a two-frequency Bragg grating-based Brillouin fiber laser
CN102255221B (en) Circulating Doppler frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator
CN102608824B (en) Tunable optical frequency converter based on phase modulator
US20090232462A1 (en) Nonlinear crystal and waveguide array for generation of terahertz radiation
CN101504507A (en) Optical fiber type mid-IR laser source generated by 3-5micrometre continuous wave differential frequency and its implementing method
US9722391B2 (en) Laser system
WO2013075566A1 (en) Tunable optical inverter based on amplitude modulation
US20040174914A1 (en) Broad-band variable-wavelength laser beam generator
CN111323986A (en) System for generating three-photon polarization-entangled GHZ state based on Sagnac optical fiber loop
CN102255224B (en) Circulating ultrasonic grating frequency shift nonlinear difference-frequency type broadband tuning terahertz wave generator
CN112505660A (en) Optical fiber laser device for water vapor differential absorption laser radar and use method
US20140327956A1 (en) Tunable optical frequency converter based on a doppler vibration mirror
Ciaffoni et al. 3.5-μm high-resolution gas sensing employing a LiNbO 3 QPM-DFG waveguide module
Yang et al. 2-μm switchable, tunable and power-controllable dual-wavelength fiber laser based on parallel cavities using 3× 3 coupler
US11276979B2 (en) Fiber-based continuous optical beat laser source to generate terahertz waves using lithium niobate crystal embedded in the fiber
Li et al. 2.76–3.98 μm picosecond mid-infrared optical parametric generation in a muti-grating MgO: PPLN
JP6093246B2 (en) Mid-infrared wavelength conversion light source
Li et al. Mode-modulation-induced high power dual-wavelength generation in a random distributed feedback Raman fiber laser
Asobe et al. Engineered quasi-phase matching device for unequally spaced multiple wavelength generation and its application to midinfrared gas sensing

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
ASS Succession or assignment of patent right

Free format text: FORMER OWNER: OU YANGZHENGBIAO

Effective date: 20120627

C41 Transfer of patent application or patent right or utility model
TA01 Transfer of patent application right

Effective date of registration: 20120627

Address after: 518000 Nanhai Road, Guangdong, Shenzhen, No. 3688, No.

Applicant after: Shenzhen University

Address before: 518000 Nanhai Road, Guangdong, Shenzhen, No. 3688, No.

Applicant before: Shenzhen University

Co-applicant before: Ouyang Zhengbiao

C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120815

Termination date: 20170421