CN103499287B - Linear displacement laser interferometer calibration method and device based on two-standard-optical-axis air bath - Google Patents

Linear displacement laser interferometer calibration method and device based on two-standard-optical-axis air bath Download PDF

Info

Publication number
CN103499287B
CN103499287B CN201310475561.2A CN201310475561A CN103499287B CN 103499287 B CN103499287 B CN 103499287B CN 201310475561 A CN201310475561 A CN 201310475561A CN 103499287 B CN103499287 B CN 103499287B
Authority
CN
China
Prior art keywords
laser interferometer
calibrated
laser
standard
mirror group
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.)
Active
Application number
CN201310475561.2A
Other languages
Chinese (zh)
Other versions
CN103499287A (en
Inventor
胡鹏程
谭久彬
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.)
Harbin Institute of Technology
Original Assignee
Harbin Institute of Technology
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 Harbin Institute of Technology filed Critical Harbin Institute of Technology
Priority to CN201310475561.2A priority Critical patent/CN103499287B/en
Publication of CN103499287A publication Critical patent/CN103499287A/en
Application granted granted Critical
Publication of CN103499287B publication Critical patent/CN103499287B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Instruments For Measurement Of Length By Optical Means (AREA)
  • Length Measuring Devices By Optical Means (AREA)

Abstract

The invention provides a linear displacement laser interferometer calibration method and a linear displacement laser interferometer calibration device based on a two-standard-optical-axis air bath, and belongs to the technical field of laser measurement. A measuring light beam of a laser interferometer to be calibrated passes through a middle through hole of a two-axis hollow laser interference mirror group, and is parallelly arranged in the center position of two parallel standard measuring light beams; the vertical distance from the standard measuring light beams to the measuring light beam of the laser interferometer to be calibrated is very small, the differences of environment interference degrees of the two standard measuring light beams and the measuring light beam of the laser interferometer to be calibrated are very small, and the air refractive index average value of the two standard measuring light beams is approximate to the air refractive index value of the measuring light beam of the laser interferometer to be calibrated; through the stable air bath environment formed by an air bath device, the air temperature, the humidity and the air pressure are approximate to uniform distribution, so the air refractive index average value of the two standard measuring light beams is more approximate to the air refractive index value of the measuring light beam of the laser interferometer to be calibrated.

Description

Based on linear displacement laser interferometer calibration method and the device of two Standard shafts gas bath
Technical field
The invention belongs to laser measuring technique field, relate generally to a kind of laser interferometer calibration method and device.
Background technology
Laser interferometry displacement of the lines technology is the standard assay techniques that precision is very high, be widely used in the fields such as accurate and ultraprecise machining, microelectronics equipment, nanometer technology industrial equipment and defence equipment, in order to ensure the accuracy of laser interferometer measurement displacement of the lines, need scientific and effective linear displacement laser interferometer calibration method and device.The general thinking of lubber-line displacement laser interferometer adopts the higher linear displacement laser interferometer of accuracy class to calibrate, and when both precision are close, is namely called comparison.In actual alignment work, linear displacement laser interferometer has suitable precision mostly, is thus realized by comparison the calibration of linear displacement laser interferometer.At present, the general calibration steps of linear displacement laser interferometer has parallel type, face-to-face formula and common light path type (Liao Chengqing, Zhu little Ping, Wang Weichen, Du Hua. the research of laser interferometer length measurement precision calibration steps. modern surveying and laboratory room managing, 2005,1:6-7).
Fig. 1 is parallel type laser interferometer calibrating installation structural representation, canonical measure mirror and be calibrated and measure mirror and be arranged on same movable platform, and when sports platform moves, the light paths of two cover laser interferometer measurement light beams increase and reduction simultaneously.Place because two cover laser interferometer are parallel, two-way light is affected by environment similar, and air refraction is less to two-way influence of light, but due to the vertical range between two-way light comparatively large, therefore during two cover laser interferometer calibrations, Abbe error is larger.
Fig. 2 is face-to-face formula laser interferometer calibrating installation structural representation, canonical measure mirror and being calibrated measures that mirror is aspectant is arranged on sports platform, its advantage is that two cover laser interferometer measurement beam axis can tune to almost on same measurement axis, both Abbe errors are very little, shortcoming is because the near-end of an interferometer is another far-end, not etc., the interference by environment is not different, and the light path impact of air refraction on two cover laser interferometer is inconsistent for both light paths.
2011, China National Measuring Science Research Inst. sets up domestic first 80 meters of large length laser interfering meter measuring device (Leng Yu states, Tao Lei, Xu Jian. based on two-frequency laser interferometer system accuracy and the analysis of Influential Factors of 80m measurement mechanism. metering and measuring technology, 2011, 38 (9): 47-49), accepted standard device puts parallel for the long distance two-frequency laser interferometer of three Agilent5530 types, become three path laser interferometers, the laser interferometer be calibrated is placed in the middle of them, thus carry out calibration calibration, this scheme belongs to the derivative schemes of parallel type calibration steps, and measure owing to adopting three road light simultaneously, therefore can compensating measure time Abbe error, but put owing to being that three laser instruments are parallel, therefore three road sign locating tab assembly light locus are far away, the measurement electrical distance every road sign locating tab assembly electrical distance being calibrated laser interferometer is also far away, all optical paths are different by the impact of environment, air refraction is inconsistent on all optical path impacts, cause calibration measurement result inaccurate.
Fig. 3 is common light path type laser interferometer calibrating installation structural representation, and light path type becomes 90 degree turn back modes unlike two laser instruments with receiver with parallel type laser interferometer calibrating installation altogether, and two cover laser interferometer share interference mirror group and measure mirror.Because two cover laser interferometer share an interference mirror group and measure mirror, cannot determine that the interference mirror group shared belongs to standard laser interferometer component with measurement mirror or belongs to and be calibrated standard laser interferometer component, therefore, not that on denotation, two calibrations of overlapping laser interferometer are calibrated.
1985, Dr-Ing H.-H.Schussler makes full use of space distribution (Dr-Ing H.-H.Schussler.Comparison andcalibration of laser interferometer systems.Measurement, 1985,3 (4): 175-184), multipair linear displacement laser interferometer is carried out common light path calibration.Owing to just increasing the quantity of light path laser interferometer altogether, institute also has the shortcoming of common light path type laser interferometer calibrating installation above-mentioned in this approach.
Summary of the invention
For Abbe error larger in above-mentioned existing linear displacement laser interferometer calibrating installation, serious air refraction inconsistency be not that on denotation, two cover laser interferometer carry out the problem of calibrating, the linear displacement laser interferometer calibration method that the present invention proposes and have developed based on two Standard shafts gas bath and device, this invention makes canonical measure light beam and is calibrated laser interferometer measurement beam orthogonal apart from very little, thus the impact of Abbe error, reduction air refraction inconsistency can be reduced, and be that on denotation, two cover laser interferometer are calibrated.
Object of the present invention is achieved through the following technical solutions:
Based on a linear displacement laser interferometer calibration method for two Standard shafts gas bath, the method step is as follows:
(1) the output light of standard laser interferometer laser instrument forms two the canonical measure light beams be parallel to each other through twin shaft hollow laser interference mirror group, article two, canonical measure light beam incides on the level crossing of interstitial hole, after being reflected back toward twin shaft hollow laser interference mirror group with the part light of level crossing displacement information in every bar canonical measure light beam, according to two interference signals corresponding respectively with two canonical measure light beams obtained from twin shaft hollow laser interference mirror group, two shift values that the level crossing that can obtain interstitial hole moves along canonical measure beam direction;
(2) the output light being calibrated laser interferometer laser instrument is calibrated laser interferometer measurement light beam through being calibrated the formation of laser interferometer interference mirror group, be calibrated the intermediate throughholes of laser interferometer measurement light beam through twin shaft hollow laser interference mirror group, parallel and coplanar with two canonical measure light beams, be calibrated laser interferometer measurement light beam to incide and be calibrated on laser interferometer catoptron, after being reflected back toward and being calibrated laser interferometer interference mirror group, according to from being calibrated the interference signal obtained in laser interferometer interference mirror group, can obtain being calibrated the shift value that laser interferometer catoptron moves along canonical measure beam direction,
(3) gas bath device is along blowing uniform speed airflow perpendicular to two canonical measure beam directions, form stable gas bath environment, in the plane perpendicular to two canonical measure light beams, by two canonical measure light beams in the line segment region that this plane projection point is formed, gas bath environment makes air themperature, humidity and air pressure approaches uniformity distribute, and makes the air refraction mean value of two canonical measure light beams more close to the air refraction value being calibrated laser interferometer measurement light beam;
(4) at sports platform along in canonical measure beam direction reciprocatory movement, with at the uniform velocity or non-at the uniform velocity sampling rate, synchronized sampling standard laser interferometer two is measured shift value and is calibrated laser interferometer measurement shift value, the standard laser interferometer two obtained sampling at every turn measure displacement average after with sample simultaneously obtain to be calibrated laser interferometer measurement shift value poor, obtain some sampled measurements error amounts.
A kind of linear displacement laser interferometer calibrating installation based on two Standard shafts gas bath, comprise standard laser interferometer laser instrument and two be configured in the receiver that can receive on standard laser interferometer interference signal position, two receivers are connected with standard laser interferometer signal disposal system by wire respectively; Standard laser interferometer laser instrument output light path is configured with can allowing of intermediate throughholes and is calibrated the twin shaft hollow standard laser interference mirror group that laser interferometer measurement light beam passes; Twin shaft hollow standard laser interference mirror group side arrangement guide rail, sports platform is fitted on guide rail, sports platform is provided with the level crossing of interstitial hole, install in level crossing interstitial hole and be calibrated laser interferometer catoptron, be calibrated laser interferometer catoptron and form by the level crossing of interstitial hole the target mirror that the coplanar and relative position of the plane of incidence fixes; At two parallel standards measuring beam sidepiece configuration gas bath devices; Be calibrated laser interferometer interference mirror group and be calibrated laser interferometer laser instrument in the configuration of twin shaft hollow standard laser interference mirror group opposite side, described in be calibrated laser interferometer interference mirror group and be positioned at and be calibrated on laser interferometer laser instrument output light path; Being calibrated laser interferometer receiver is configured on the position that can receive and be calibrated laser interferometer interference signal, and wire will be calibrated laser interferometer receiver and be calibrated laser interferometer signal disposal system and be connected.
The present invention has following characteristics and good result:
(1) compared with parallel type laser interferometer calibrating installation, owing to being calibrated the intermediate throughholes of laser interferometer measurement light beam by twin shaft hollow laser interference mirror group, the vertical range be calibrated between laser interferometer measurement optical axis and parallel standards optical axis is shorter, both light paths are more close, and therefore during two cover laser interferometer calibrations, Abbe error is very little.
(2) compared with face-to-face formula laser interferometer calibrating installation, in the plane perpendicular to two canonical measure light beams, by two canonical measure light beams in the line segment region that this plane projection point is formed, article two, canonical measure light beam and to be calibrated laser interferometer measurement light beam very little by the degree difference of environmental interference, the air refraction mean value of two canonical measure light beams is close to the air refraction value being calibrated laser interferometer measurement light beam.
(3) light path type laser interferometer calibrating installation is compared together, shares interference mirror group and measures mirror, standard laser interferometer component and to be calibrated standard laser interferometer component ownership clear and definite, is that on denotation, two cover laser interferometer are calibrated.
(4) perpendicular to two canonical measure beam planes and by two canonical measure light beams in the line segment region that its plane projection is formed, the stable gas bath environment that the gas bath device configured by two parallel standards measuring beam sidepieces is formed makes air themperature, humidity and air pressure approaches uniformity distribute, and makes the air refraction mean value of two canonical measure light beams more close to the air refraction value being calibrated laser interferometer measurement light beam.
Accompanying drawing explanation
Fig. 1 is parallel type laser interferometer calibrating installation structural representation
Fig. 2 is face-to-face formula laser interferometer calibrating installation structural representation
Fig. 3 is for being total to light path type laser interferometer calibrating installation structural representation
Fig. 4 is the linear displacement laser interferometer calibrating installation structural representation based on two Standard shafts gas bath
Fig. 5 is by the level crossing of interstitial hole and hot spot position distribution schematic diagram on the plane of incidence being calibrated the target mirror that laser interferometer catoptron forms
In figure: 1 standard laser interferometer laser instrument, 2 twin shaft hollow standard laser interference mirror groups, 3, article 4 two, parallel standards measuring beam, 5 level crossings having an interstitial hole, 6, 7 standard laser interferometer receivers, 8 standard signal disposal systems, 9 are calibrated laser interferometer laser instrument, 10 are calibrated laser interferometer interference mirror group, 11 are calibrated laser interferometer measurement light beam, 12 intermediate throughholes, 13 are calibrated laser interferometer catoptron, 14 are calibrated laser interferometer receiver, 15 are calibrated laser interferometer signal disposal system, 16 sports platforms, 17 guide rails, 18 gas bath devices, 19, article 20 two, parallel standards measuring beam facula position, 21 are calibrated laser interferometer beam and focus position.
Embodiment
Below in conjunction with accompanying drawing, the specific embodiment of the invention is described in further detail.
A kind of linear displacement laser interferometer calibrating installation based on two Standard shafts gas bath, comprise standard laser interferometer laser instrument 1 and two be configured in the receiver 6,7 that can receive on standard laser interferometer interference signal position, two receivers 6,7 are connected with standard laser interferometer signal disposal system 8 by wire respectively; It is characterized in that on interferometer laser instrument 1 output light path, being configured with can allowing of intermediate throughholes 12 in standard laser is calibrated the twin shaft hollow standard laser interference mirror group 2 that laser interferometer measurement light beam 11 passes; Twin shaft hollow standard laser interference mirror group 2 side arrangement guide rail 17, sports platform 16 is fitted on guide rail 17, sports platform 16 is provided with the level crossing 5 of interstitial hole, install in level crossing 5 interstitial hole and be calibrated laser interferometer catoptron 13, be calibrated laser interferometer catoptron 13 and form the fixing target mirror of the coplanar and relative position of the plane of incidence by the level crossing 5 of interstitial hole; At two parallel standards measuring beams 3,4 sidepiece configuration gas bath device 18; Be calibrated laser interferometer interference mirror group 10 in the configuration of twin shaft hollow standard laser interference mirror group 2 opposite side and be calibrated laser interferometer laser instrument 9, described in be calibrated laser interferometer interference mirror group 10 and be positioned at and be calibrated on laser interferometer laser instrument 9 output light path; Being calibrated laser interferometer receiver 14 is configured on the position that can receive and be calibrated laser interferometer interference signal, and wire will be calibrated laser interferometer receiver 14 and be calibrated laser interferometer signal disposal system 15 and be connected.
Described two parallel standards measuring beams 3,4 are with to be calibrated laser interferometer measurement light beam 11 all vertical with the target mirror plane of incidence.
The intermediate throughholes 12 of described twin shaft hollow standard laser interference mirror group 2 comprises arbitrary shape, and number is one or more.
Described every bar parallel standards measuring beam 3,4 and be calibrated laser interferometer measurement light beam 11 had the level crossing 5 of interstitial hole respectively and be calibrated laser interferometer catoptron 13 reflect once or once more than.
The described laser interferometer catoptron 13 that is calibrated comprises level crossing, prism of corner cube, right-angle prism.
Based on a linear displacement laser interferometer calibration method for two Standard shafts gas bath, the method step is as follows:
(1) the output light of standard laser interferometer laser instrument 1 forms two the canonical measure light beams 3 be parallel to each other through twin shaft hollow laser interference mirror group 2, 4, article two, canonical measure light beam 3, 4 incide on the level crossing 5 of interstitial hole, after being reflected back toward twin shaft hollow laser interference mirror group 2 with the part light of level crossing 5 displacement information in every bar canonical measure light beam, according to obtain from twin shaft hollow laser interference mirror group 2 with two canonical measure light beams 3, 4 two corresponding respectively interference signals, the level crossing 5 of interstitial hole can be obtained along canonical measure light beam 3, two shift values of 4 direction motions,
(2) the output light being calibrated laser interferometer laser instrument 9 is calibrated laser interferometer measurement light beam 11 through being calibrated the formation of laser interferometer interference mirror group 10, be calibrated the intermediate throughholes 12 of laser interferometer measurement light beam 11 through twin shaft hollow laser interference mirror group 10, with two canonical measure light beams 3, 4 is parallel and coplanar, be calibrated laser interferometer measurement light beam 11 to incide and be calibrated on laser interferometer catoptron 13, after being reflected back toward and being calibrated laser interferometer interference mirror group 10, according to from being calibrated the interference signal obtained in laser interferometer interference mirror group 10, can obtain being calibrated laser interferometer catoptron 13 along canonical measure light beam 3, the shift value of 4 direction motions,
(3) gas bath device 18 blows uniform speed airflow along perpendicular to two canonical measure light beams 3,4 direction, form stable gas bath environment, in the plane perpendicular to two canonical measure light beams 3,4, by two canonical measure light beams 3,4 in the line segment region that this plane projection point is formed, gas bath environment makes air themperature, humidity and air pressure approaches uniformity distribute, and makes the air refraction mean value of two canonical measure light beams 3,4 more close to the air refraction value being calibrated laser interferometer measurement light beam 11;
(4) at sports platform 16 along in canonical measure light beam 3,4 direction reciprocatory movement, with at the uniform velocity or non-at the uniform velocity sampling rate, synchronized sampling standard laser interferometer two is measured shift value and is calibrated laser interferometer measurement shift value, the standard laser interferometer two obtained sampling at every turn measure displacement average after with sample simultaneously obtain to be calibrated laser interferometer measurement shift value poor, obtain some sampled measurements error amounts.
Canonical measure beam and focus position 19,20 is the position that two parallel standards measuring beams 3,4 incide the level crossing 5 of interstitial hole successively respectively, being calibrated laser interferometer beam and focus position 21 is be calibrated the position that laser interferometer measurement light beam 11 incidence is calibrated laser interferometer catoptron 13, can find out from position distribution and be calibrated the middle position that laser interferometer beam and focus position 21 is in canonical measure beam and focus position 19,20, namely two parallel standards measuring beams 3,4 will be calibrated laser interferometer measurement light beam 11 and will be clamped in centre position.

Claims (6)

1., based on a linear displacement laser interferometer calibration method for two Standard shafts gas bath, it is characterized in that the method step is as follows:
(1) the output light of standard laser interferometer laser instrument forms two the canonical measure light beams be parallel to each other through twin shaft hollow laser interference mirror group, article two, canonical measure light beam incides on the level crossing of interstitial hole, after being reflected back toward twin shaft hollow laser interference mirror group with the part light of level crossing displacement information in every bar canonical measure light beam, according to two interference signals corresponding respectively with two canonical measure light beams obtained from twin shaft hollow laser interference mirror group, two shift values that the level crossing that can obtain interstitial hole moves along canonical measure beam direction;
(2) the output light being calibrated laser interferometer laser instrument is calibrated laser interferometer measurement light beam through being calibrated the formation of laser interferometer interference mirror group, be calibrated the intermediate throughholes of laser interferometer measurement light beam through twin shaft hollow laser interference mirror group, parallel and coplanar with two canonical measure light beams, be calibrated laser interferometer measurement light beam to incide and be calibrated on laser interferometer catoptron, after being reflected back toward and being calibrated laser interferometer interference mirror group, according to from being calibrated the interference signal obtained in laser interferometer interference mirror group, can obtain being calibrated the shift value that laser interferometer catoptron moves along canonical measure beam direction,
(3) gas bath device is along blowing uniform speed airflow perpendicular to two canonical measure beam directions, form stable gas bath environment, in the plane perpendicular to two canonical measure light beams, by two canonical measure light beams in the line segment region that this plane projection point is formed, gas bath environment makes air themperature, humidity and air pressure approaches uniformity distribute, and makes the air refraction mean value of two canonical measure light beams more close to the air refraction value being calibrated laser interferometer measurement light beam;
(4) at sports platform along in canonical measure beam direction reciprocatory movement, with at the uniform velocity or non-at the uniform velocity sampling rate, synchronized sampling standard laser interferometer two is measured shift value and is calibrated laser interferometer measurement shift value, the standard laser interferometer two obtained sampling at every turn measure displacement average after with sample simultaneously obtain to be calibrated laser interferometer measurement shift value poor, obtain some sampled measurements error amounts.
2. the linear displacement laser interferometer calibrating installation based on two Standard shafts gas bath, comprise standard laser interferometer laser instrument (1) and two be configured in the receiver (6,7) that can receive on standard laser interferometer interference signal position, two receivers (6,7) are connected with standard laser interferometer signal disposal system (8) by wire respectively; It is characterized in that being configured with can allowing of intermediate throughholes (12) on standard laser interferometer laser instrument (1) output light path and be calibrated twin shaft hollow standard laser interference mirror group (2) that laser interferometer measurement light beam (11) passes; Twin shaft hollow standard laser interference mirror group (2) side arrangement guide rail (17), sports platform (16) is fitted on guide rail (17), sports platform (16) is provided with the level crossing (5) of interstitial hole, install in level crossing (5) interstitial hole and be calibrated laser interferometer catoptron (13), be calibrated laser interferometer catoptron (13) and have the level crossing of interstitial hole (5) the composition plane of incidence coplanar and the target mirror that relative position is fixing; At two parallel standards measuring beams (3,4) sidepiece configuration gas bath device (18); Be calibrated laser interferometer interference mirror group (10) in the configuration of twin shaft hollow standard laser interference mirror group (2) opposite side and be calibrated laser interferometer laser instrument (9), described in be calibrated laser interferometer interference mirror group (10) and be positioned at and be calibrated on laser interferometer laser instrument (9) output light path; Being calibrated laser interferometer receiver (14) is configured on the position that can receive and be calibrated laser interferometer interference signal, and wire will be calibrated laser interferometer receiver (14) and be calibrated laser interferometer signal disposal system (15) and be connected.
3. the linear displacement laser interferometer calibrating installation based on two Standard shafts gas bath according to claim 2, is characterized in that described two parallel standards measuring beams (3,4) and to be calibrated laser interferometer measurement light beam (11) all vertical with the target mirror plane of incidence.
4. the linear displacement laser interferometer calibrating installation based on two Standard shafts gas bath according to claim 2, it is characterized in that the intermediate throughholes (12) of described twin shaft hollow standard laser interference mirror group (2) comprises arbitrary shape, number is one or more.
5. the linear displacement laser interferometer calibrating installation based on two Standard shafts gas bath according to claim 2, is characterized in that described every bar parallel standards measuring beam (3,4) and is calibrated laser interferometer measurement light beam (11) had the level crossing of interstitial hole (5) respectively and be calibrated more than laser interferometer catoptron (13) reflection once or once.
6. the linear displacement laser interferometer calibrating installation based on two Standard shafts gas bath according to claim 2, is characterized in that the described laser interferometer catoptron (13) that is calibrated comprises level crossing, prism of corner cube, right-angle prism.
CN201310475561.2A 2013-10-11 2013-10-11 Linear displacement laser interferometer calibration method and device based on two-standard-optical-axis air bath Active CN103499287B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310475561.2A CN103499287B (en) 2013-10-11 2013-10-11 Linear displacement laser interferometer calibration method and device based on two-standard-optical-axis air bath

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310475561.2A CN103499287B (en) 2013-10-11 2013-10-11 Linear displacement laser interferometer calibration method and device based on two-standard-optical-axis air bath

Publications (2)

Publication Number Publication Date
CN103499287A CN103499287A (en) 2014-01-08
CN103499287B true CN103499287B (en) 2015-03-11

Family

ID=49864518

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201310475561.2A Active CN103499287B (en) 2013-10-11 2013-10-11 Linear displacement laser interferometer calibration method and device based on two-standard-optical-axis air bath

Country Status (1)

Country Link
CN (1) CN103499287B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109856918B (en) * 2017-11-30 2021-01-29 上海微电子装备(集团)股份有限公司 Interferometer gas bath device and photoetching machine

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1657865A (en) * 2004-02-20 2005-08-24 安捷伦科技有限公司 System and method of using a side-mounted interferometer to acquire position information
CN102334024A (en) * 2009-12-23 2012-01-25 哈利伯顿能源服务公司 Interferometry-based downhole analysis tool
CN103267581A (en) * 2013-05-17 2013-08-28 中山大学 Spectrum shearing interferometer suitable for measuring shaped pulses

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1657865A (en) * 2004-02-20 2005-08-24 安捷伦科技有限公司 System and method of using a side-mounted interferometer to acquire position information
CN102334024A (en) * 2009-12-23 2012-01-25 哈利伯顿能源服务公司 Interferometry-based downhole analysis tool
CN103267581A (en) * 2013-05-17 2013-08-28 中山大学 Spectrum shearing interferometer suitable for measuring shaped pulses

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
Comparison and calibration of laser interferometer systems;Dr_Ing H.-H.Schussler;《Measurement》;19851231(第4期);175-184 *
动态测量光栅测长仪的位置误差;刘春山等;《工业计量》;20050926(第05期);10-12 *
基于80m测量装置的双频激光干涉仪系统精度及影响因素分析;冷玉国等;《计量与测试技术》;20111231(第09期);47-49 *
激光干涉仪测长精度校准方法的研究;廖澄清等;《现代测量与实验室管理》;20050126(第01期);6-7 *

Also Published As

Publication number Publication date
CN103499287A (en) 2014-01-08

Similar Documents

Publication Publication Date Title
CN103528499B (en) Morphology compensation type double-optical-axis linear displacement laser interferometer calibration method and device
CN103528526B (en) Morphology compensation type three-optical-axis linear displacement laser interferometer calibration method and device
CN103528525B (en) Three-optical axis compensation and air bath type linear displacement laser interferometer calibration method and device
CN103499277B (en) Angular displacement laser interferometer calibration method and device based on four standard optical axes
CN103499278B (en) Method and device for calibrating morphology compensation type four-optical-axis linear displacement laser interferometer
CN103499279B (en) Linear displacement laser interferometer calibration method and device based on three standard optical axes
CN103499286B (en) Reset compensation type two-optical-axis linear displacement laser interferometer calibration method and device
CN103499280B (en) Reset compensation type three-optical-axis linear displacement laser interferometer calibration method and device
CN103499289B (en) Method and device for calibrating morphology compensation type four-optical-axis angular displacement laser interferometer
CN103499287B (en) Linear displacement laser interferometer calibration method and device based on two-standard-optical-axis air bath
CN103499283B (en) Linear displacement laser interferometer calibration method and device based on two standard optical axes
CN103528501B (en) Linear displacement laser interferometer calibrating method and device based on four-standard light-axis gas bath
CN103499285B (en) Method and device for calibrating optically biaxial compensation and gas bath type linear displacement laser interferometer
CN103528500B (en) Linear displacement laser interferometer calibrating method and device based on four-standard optical axis
CN103499292B (en) Angular displacement laser interferometer calibration method and device based on two standard optical axes
CN103528506B (en) Four-optical axis returning and air bath type angular displacement laser interferometer calibration method and device
CN103499288B (en) Linear displacement laser interferometer calibration method and device based on three-standard-optical-axis air bath
CN103499284B (en) Method and device for calibrating optically biaxial return and gas bath type linear displacement laser interferometer
CN103499282B (en) Calibration method and device for three-optical-axis return and air bath linear displacement laser interferometer
CN103499281B (en) Method and device for calibrating four-optical-axis return and gas bath type linear displacement laser interferometer
CN103528505B (en) Four-optical axis compensation and air bath type linear displacement laser interferometer calibration method and device
CN103528504B (en) Method and device for calibrating return compensation type four-optical-axis linear displacement laser interferometer
CN103528509B (en) Angular displacement laser interferometer calibrating method and device based on dual-standard optical axis gas bath
CN103528507B (en) Method and device for calibrating return compensation type four-optical-axis angular displacement laser interferometer
CN103528502B (en) Method and device for calibrating return compensation type double-optical-axis angular displacement laser interferometer

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant