Frequency-locked single-frequency semiconductor laser device

A frequency locking, semiconductor technology, applied in the laser field, can solve the problem of the accuracy of the frequency stabilization scheme, and achieve the effect of reducing the volume and stability of the optical path, and reducing the complexity of the device

CN114172016APending Publication Date: 2022-03-11HUAZHONG PHOTOELECTRIC TECH INST (CHINA SHIPBUILDING IND CORP THE NO 717 INST)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Publication Date
2022-03-11

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Abstract

The invention provides a frequency-locked single-frequency semiconductor laser device. The device comprises a semiconductor light source unit, an isolation light splitting unit, a dichroic atomic vapor laser frequency stabilization unit and a laser tube shell, the dichroic atomic vapor laser frequency stabilization unit at least comprises a gas reference cell with a coil, a 1 / 4 wave plate, a polarization splitting prism, a left detector, a lower detector and a signal processing backboard; the gas reference cell with the coil is used for providing an atomic gas chamber required by frequency stabilization, and the 1 / 4 wave plate and the polarization splitting prism are used for separating a left-handed circular polarization component and a right-handed circular polarization component of linearly polarized light. According to the scheme, device-level integration of the single-frequency semiconductor laser light source and the frequency stabilization unit can be achieved, the light path size is greatly reduced, the device complexity is reduced, the optical stability is improved, and the frequency stabilization laser precision is guaranteed.
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Description

Technical field

[0001] The present invention belongs to the field of laser technology, and more particularly to a frequency-locked single-band semiconductor laser device. Background technique

[0002] Quantum precision measurement technology has verified its high-precision sensitive measurement ability. Currently, it is moving towards improvement accuracy and engineering, which has an extremely important role in the construction of high-precision autonomous navigation capabilities. .

[0003] Quantum precision measurement is dependent on single-frequency laser, and single-frequency laser needs to be stably locked in the vicinity of super-fine lines at the atom. Commercial single-frequency laser devices are basically not integrated with steady frequency, and the implementation of the steady frequency function is increasing to increase the volume of the volume. This embodiment is not conducive to the deviceification and engineering of single-frequency lasers, hindering quantum prec...

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Embodiment Construction

[0024] In order to make it possible to understand the invention, the present invention will be apparent from the drawings in the embodiment of the present invention, and the technical solutions in the embodiments of the present invention will be described in understanding, and hereinafter, obviously, The described embodiments are merely the embodiments of the invention, and not all of the embodiments. Based on the embodiments of the present invention, those of ordinary skill in the art will belong to the scope of the present invention in the scope of the present invention without making creative labor premises.

[0025] It will be understood that the description or claims of the present invention and the terms "comprising" and other similar expressions are meant, meaning that it is inclusive, such as a series of steps or units including a series of steps or units, and equipment Not limited to the steps or units listed. In addition, "first" "second" is used to distinguish different...