Optical feedback range finder for two-frequency laser based on Zeeman-birefraction

A dual-frequency laser, birefringence technology, used in instruments, measuring devices, and re-radiation, etc., can solve problems such as inability to measure

Inactive Publication Date: 2005-09-07
TSINGHUA UNIV
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  • Abstract
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Problems solved by technology

If the optical return level is too low, there will be no mode hopping to make the measurement impossible

Method used

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  • Optical feedback range finder for two-frequency laser based on Zeeman-birefraction
  • Optical feedback range finder for two-frequency laser based on Zeeman-birefraction
  • Optical feedback range finder for two-frequency laser based on Zeeman-birefraction

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Embodiment Construction

[0031] The device of the present invention is as figure 1 As shown, 1 is the tail light output mirror of the HeNe laser, and its reflectivity is generally 99.8%. 2 is the gain tube of the laser, which is filled with a mixed gas of HeNe. Beam output mirror, the reflectivity is generally 98%. 1, 2, 3 and 4 together form the main body of a HeNe laser with a cavity length of 155mm. The light source used in the present invention is a dual-frequency laser with a small frequency difference. The mechanical stress applying device 5 is used for the main body of the existing laser, and the cavity length is 155mm. The light source used in the present invention is a dual-frequency laser with small frequency difference, and a stress is applied to the existing laser window 3 by a mechanical stress applying device 5 to generate a birefringence effect. The mechanical stress applying device is a reinforcing ring inlaid with a screw, and the tension of the screw can be adjusted to adjust the s...

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Abstract

Light-feedback distometer based on two-frequency laser with Zeeman-birefraction, which belong to laser ranging technology field. The distometer consists of light source, measuring section and signal processing section. Laser outside cavity is tuned to realize laser internal schema transformation and at the same time optical signal feedback detection is exert on laser. The difference of light intensity modulation depth between laser working on longitudinal bimodule and on monomode is relative to outside cavity length. When outside cavity length equals integer multiple laser cavity length modulation depth difference is minimum; when outside cavity length bias from integer multiple laser cavity length, modulation depth enlarges gradually.

Description

technical field [0001] An optical back-collapse rangefinder based on a Zeeman-birefringence dual-frequency laser belongs to the technical field of laser rangefinder. Background technique [0002] When the laser output light is reflected or scattered by external objects, part of the light will return to the laser cavity and mix with the beam in the cavity, causing the output light intensity of the laser to change. This phenomenon is called the self-mixing interference phenomenon. ) or optical feedback. King first reported the phenomenon of optical backcollapse in 1963. The optical return system is simple and compact in structure, and generally only consists of a laser and the object to be measured. The two basic characteristics of the optical feedback signal are: [0003] 1. Every time the external reflector or scattering object moves by half the wavelength of the light wave, the laser light strengthens a fringe; [0004] 2. The fluctuating depth of the fringe is comparab...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01S17/08
Inventor 刘刚张书练
Owner TSINGHUA UNIV
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