Anti-polarization mixing single-path circular polarization interference and single wollaston prism splitting-type homodyne laser vibrometer

A laser vibrometer and prism spectroscopic technology, used in instruments, measuring devices, measuring ultrasonic/sonic/infrasonic waves, etc., can solve problems such as poor device accuracy, DC bias, and optical path asymmetry, and achieve suppression of polarization leakage and mixing. The effect of stacking, suppressing nonlinear errors, and simple optical path

Active Publication Date: 2015-09-16
HARBIN INST OF TECH
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Problems solved by technology

The disadvantages of this technical solution are: 1) Placing a polarizer on the reference arm causes the light intensity of the reference light to be greatly reduced relative to the measurement light, and introduces unequal amplitude errors of the two output signals; 2) The interference part is generated by a polarizer Linearly polarized light, the extinction ratio of the polarizer is low, and there is polarization aliasing in the interference part, which introduces nonlinear errors
Its shortcomings are: 1) The accuracy of the one-eighth wave plate device is poor, the actual phase shift is less than 45°, and the linearly polarized reference light passes through the one-eighth wave plate twice to actually obtain elliptically polarized light, resulting in The non-orthogonal phase shift error of the two actually output signals is large; 2) The detection part adopts PBS light splitting, and there is polarization leakage phenomenon, which introduces a large nonlinear error
The disadvantages of this technical solution are: 1) there are many optical elements, and there are many sources of nonlinear errors; 2) the use of polarization beam splitter PBS to split light, there is a phenomenon of polarization leakage, resulting in significant nonlinear errors
The disadvantages of this technical solution are: 1) the detection part requires an additional quarter-wave plate to generate four photoelectric signals with a phase difference of 90°; Equal amplitude and non-orthogonal errors, thus introducing nonlinear errors
The advantage of this technical solution is that the symmetry of the optical path is better, and the non-orthogonal error problem of the solution proposed by Peter is solved. The disadvantages are: 1) The detection part needs an additional quarter-wave plate to generate four Photoelectric signals with a phase difference of 90°; 2) The beam splitter used is an ordinary beam splitter BS, and the beam splitting effect is related to the polarization state of the light incident to the four-channel detection part, and has a large additional phase shift
The disadvantages of this technical solution are: 1) the detection part requires an additional quarter-wave plate to generate four photoelectric signals with a phase difference of 90°; Equal amplitude and non-orthogonal errors, thus introducing nonlinear errors
[0016] In summary, due to factors such as laser power drift, unsatisfactory optical components, and installation errors of optical components, especially the polarization leakage of optical components such as polarizing beam splitters PBS and polarizers, and the phase delay error of wave plate devices, the existing homodyne In the interference part and / or detection part of the orthogonal laser vibrometer technical solution, due to the limitation of the optical path structure, principle and the characteristics of the optical device itself, there are nonlinear errors that are difficult to overcome, and the nonlinear error can reach several nm or even dozens nm, it is difficult to meet real-time, high-precision measurement, especially the vibration measurement requirements of the next generation of sub-nanometer or even picometer-level accuracy, and nano-level amplitude

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  • Anti-polarization mixing single-path circular polarization interference and single wollaston prism splitting-type homodyne laser vibrometer
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  • Anti-polarization mixing single-path circular polarization interference and single wollaston prism splitting-type homodyne laser vibrometer

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[0031] The specific implementation manner of the present invention will be described in detail below with reference to the accompanying drawings, and examples will be given.

[0032]An anti-polarization aliasing single-channel circular polarization interference and single Wollastedt prism spectroscopic homodyne laser vibrometer is composed of an interference part 13 and a detection part 14, and the interference part 13 is composed of a laser 1, a first four A quarter-wave plate 2, a first depolarizing beam splitter 3, a measuring mirror 4, a second quarter-wave plate 5 and a reference mirror 6; the laser 1 emits linearly polarized light, which passes through the first quarter-wave plate After 2, it becomes circularly polarized light, and then splits light through the first depolarizing beam splitter 3, the reflected light forms the first beam 15 as the measurement light, and the transmitted light forms the second beam 16 as the reference light; the first beam 15 passes through ...

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Abstract

The invention discloses an anti-polarization mixing single-path circular polarization interference and single wollaston prism splitting-type homodyne laser vibrometer, which belongs to the field of laser interference measurement. According to an interference part, circular polarization reference lights and circular polarization measurement lights with orthogonal single-path polarization directions and coincident light paths are generated through two quarter wave plates and a non-polarization beam splitter (NBS); according to a detection part, after the reference lights and the measurement lights are split, four paths of photoelectric signals with a phase difference of 90 DEG are generated via the same wollaston prism, and outstanding characteristics for suppressing nonlinear errors can be acquired in aspects of the light path structure and the principle. Four-channel homodyne orthogonal laser interference measurement can be realized, problems that polarization leakage and polarization mixing exist in the light path in the prior technical scheme, an output signal has DC bias errors and non-orthogonal errors, the measurement result has a significant nonlinear error and the like can be effectively solved, and significant technical advantages are provided in the field of ultra precision vibration measurement.

Description

technical field [0001] The invention belongs to the field of laser interferometry, and mainly relates to a single-path circular polarization interference and single Wollaster prism spectroscopic homodyne laser vibrometer with anti-polarization aliasing. Background technique [0002] As an ultra-precision measuring instrument that can trace the vibration value to the laser wavelength, the laser vibrometer is widely used in the fields of dynamic displacement measurement, vibration measurement and monitoring, ultra-precision equipment and system integration, scientific research and experiments. Laser vibrometers based on laser interferometry can be divided into two categories, homodyne and heterodyne, according to the principle. The two have significant differences in working principle, optical path structure and technical characteristics. The homodyne measurement method uses a single-frequency laser as the light source, based on the classic or improved Michelson laser interfer...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01H9/00
Inventor 崔俊宁何张强谭久彬
Owner HARBIN INST OF TECH
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