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Transverse Zeeman laser frequency locking method and device based on piezoelectric effect and acousto-optic frequency shifting

An acousto-optic frequency shifting and piezoelectric effect technology, applied in the field of laser applications, can solve the problems of reference frequency difference, adverse effects of laser frequency stability, poor frequency consistency, etc., to improve stability and frequency stability accuracy, and suppress laser wavelength Drift and jump, the effect of improving environmental applicability

Active Publication Date: 2017-06-06
HARBIN INST OF TECH
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  • Application Information

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Problems solved by technology

[0003] The frequency-stabilized laser sources currently used in laser interferometry systems mainly include dual-longitudinal-mode frequency-stabilized lasers, transverse Zeeman frequency-stabilized lasers, and longitudinal Zeeman lasers. The center frequency of the laser gain curve is used as the frequency stabilization reference for such lasers. The reference frequency of frequency stabilization control, while the center frequency of the laser gain curve changes with the working gas pressure and discharge conditions, and the physical parameters of multiple frequency stabilization lasers cannot be highly consistent, so there are differences in the reference frequency of frequency stabilization control , resulting in low frequency consistency of laser output from multiple frequency-stabilized lasers, which can only reach 10 -6 ~10 -7
[0004] In order to solve the problem of poor frequency consistency between frequency-stabilized lasers, Harbin Institute of Technology proposed a dual-longitudinal-mode laser bias frequency locking method (Chinese Patent Application No. The output laser frequency of the frequency-stabilized laser or the dual-longitudinal-mode laser is used as a reference, and the other multiple dual-longitudinal-mode lasers are locked by a certain value relative to the reference frequency, so that the output lasers of multiple dual-longitudinal-mode lasers have the same wavelength ( frequency), but this method needs to adjust the internal working parameters of the laser during the laser frequency locking process. On the one hand, because the adjustment method is an indirect adjustment, the response speed of the system is relatively slow. There are certain differences, and changes in the internal working parameters of the laser may have a negative impact on the frequency stability of the laser, and in severe cases it may even cause the laser to lose lock

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  • Transverse Zeeman laser frequency locking method and device based on piezoelectric effect and acousto-optic frequency shifting
  • Transverse Zeeman laser frequency locking method and device based on piezoelectric effect and acousto-optic frequency shifting
  • Transverse Zeeman laser frequency locking method and device based on piezoelectric effect and acousto-optic frequency shifting

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Embodiment Construction

[0025] The implementation examples of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0026] Such as figure 1 and figure 2 As shown, the transverse Zeeman laser frequency locking device based on the piezoelectric effect and acousto-optic frequency shift in the device of the present invention includes a laser power supply A1, a frequency stabilization status indicator light 2, a reference transverse Zeeman frequency stabilization laser 3, and a polarization beam splitter A4 , fiber beam splitter 5, the laser power supply A (1) and the frequency stabilization status indicator light (2) are all connected with the reference transverse Zeeman frequency stabilization laser (3), and the polarization beam splitter A (4) is placed on the reference transverse Zeeman stabilization Between the output end of the frequency laser (3) and the input end of the fiber beam splitter (5), the device also includes n ≥ 1 transverse Zeeman la...

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Abstract

The invention belongs to the technical field of laser application, and provides a horizontal Zeeman laser frequency locking method and device based on a piezoelectric effect and acousto-optic frequency shift. By adopting the acousto-optic frequency shift technology, output laser frequencies of a plurality of horizontal Zeeman lasers based on cavity length piezoelectric regulation are locked to the output laser frequency of the same reference horizontal Zeeman frequency stabilized laser, and therefore output laser rays of all lasers are uniform in frequency value. The purposes of overcoming the defect that traditional frequency stabilized lasers are poor in frequency uniformity and providing a novel laser light source for ultra-precise laser interferometry are achieved.

Description

technical field [0001] The invention belongs to the technical field of laser applications, in particular to a lateral Zeeman laser frequency locking method and device based on piezoelectric effect and acousto-optic frequency shifting. Background technique [0002] In recent years, ultra-precision measurement and processing technologies represented by lithography machines and CNC machine tools have developed towards large-scale, high-precision, multi-space degrees of freedom simultaneous measurement, and the total laser power consumption of the laser interferometry system has increased sharply. The output laser power exceeds the output laser power of a single frequency-stabilized laser, so it is necessary to use multiple frequency-stabilized lasers for combined measurement at the same time. However, there are differences in the relative frequency stability, laser wavelength value, and wavelength drift direction of different frequency-stabilized lasers, which will bring about ...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01S3/13
Inventor 谭久彬付海金胡鹏程
Owner HARBIN INST OF TECH