Method and apparatus for liquid guided pump beam

A technology of guiding device and pump light source, applied in laser cooling device, laser, laser parts and other directions, can solve the problem that thermal effect and thermal stress cannot be effectively reduced, can not solve the overheating of crystal end face and center, and can not solve the problem of coolant 6 Fully cooling and other issues to achieve significant implementation effects, solve high-power pumping problems, and improve beam quality

Inactive Publication Date: 2009-01-14
TSINGHUA UNIV
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Problems solved by technology

The heat distribution on the incident end surface is concentrated and the temperature is high. The solid laser medium must be cooled, otherwise the thermal effect caused by the temperature difference in the laser medium activation area will make the laser work unstable, the beam quality will decrease, and the thermal stress caused by the temperature difference will cause the crystal to deform. , overheating will easily cause the end film layer to be easily burned, and the solid medium will burst in severe cases, so high-efficiency heat dissipation and reduction of thermal effects are usually the main factors considered when designing high average power systems
The commonly used cooling methods in the prior art include liquid cooling and conduction cooling, both of which cool the side of the crystal, which cannot solve the problem of overheating of the end face and the center of the crystal, so the heat dissipation effect is not good; at the same time, because the center is hot and the edges are cold, the crystal The temperature distribution is more uneven, and the thermal effect and thermal stress cannot be effectively reduced
like figure 2 As shown, 5 is a crystal, and the conduction cooling is to use the metal heat sink 4 in close contact with the solid laser medium, and realize heat dissipation through contact conduction. Because in this heat dissipation mode, the quality of the cooling joint surface between the heat sink and the solid laser medium is not very high ( Especially the curved surface), so the heat dissipation effect is not good. In order to ensure heat dissipation, the processing accuracy of the heat sink must also be very high
like image 3 As shown, liquid cooling is impossible for cooling liquid 6 to sufficiently cool the few millimeters at the end of the crystal due to the volume covered by the O-ring 17

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  • Method and apparatus for liquid guided pump beam
  • Method and apparatus for liquid guided pump beam
  • Method and apparatus for liquid guided pump beam

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Embodiment Construction

[0031] The present invention is described below in conjunction with accompanying drawing.

[0032] The first embodiment of the present invention is as Figure 4 As shown, the device of the present invention comprises a coupling system 8, a liquid guiding device 9, and an optical fiber 3 for output. The liquid guiding device 9 is composed of a special liquid nozzle 10 , a coolant collector 11 , a liquid return pipe 12 , a circulating pump 13 and a radiator 14 . Such as Figure 4As shown, the feature of the present invention is that the pump light passing through the coupling system 8 passes through a special liquid nozzle 10 with a transparent window at the front end and is coupled into the liquid column 15 ejected from the nozzle, and the center line of the liquid column 15 is precisely aligned with the optical fiber. 3, the rear end of a tubular cooling liquid collector 11 is sealed and sleeved on the optical fiber 3, and the front end liquid inlet of the cooling liquid col...

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Abstract

A liquid leading pump beam method and device belongs to field of optics and laser photoelectron technique. It includes pumping light source, optical coupling device, liquid leading device and fiber. Thereinto: the optical coupling device receives the pumping light omitted by the pumping light source; liquid nozzle, the pumping beam coupled by the optical coupling device is coupled with liquid column spurted by the liquid nozzle; the central line of cooling fluid collector is aimed at the central line of the liquid nozzle; return flexible hose and liquid-in end are connected with the cooling fluid collector; radiator and circlulating pump are in series, the liquid-in port of the radiator and the liquid-out port of the return flexible hose are connected, the output end of the circlulating pump is connected with the lower end of the liquid nozzle; the liquid nozzle, the cooling fluid collector, the return flexible hose, the radiator and the circlulating pump are in series to form a liquid leading device. The invention resolves the high power pumping problem in solid laser and fiber laser, and the output power of laser can be increased, stability and reliability of laser system can be guaranteed.

Description

technical field [0001] The invention relates to a method and a device for guiding a light beam by a liquid, which can be used for a laser resonant cavity and a laser amplifier, and belongs to the technical field of optics and laser optoelectronics. Background technique [0002] In the field of solid-state lasers and fiber lasers, when high-power solid-state lasers and fiber lasers work, a large amount of pump light needs to be injected into the gain medium. [0003] In the existing technology of fiber laser, such as figure 1 As shown, it includes a pump source 1, an optical system 2, an optical fiber 3 and a heat sink 4. After the pump beam is compressed and converged by the optical system 2, it is directly incident on the end face of the optical fiber 3 and is absorbed by the optical fiber. The heat distribution at the end of the optical fiber is concentrated, and the temperature is high. It must be cooled, otherwise it will cause the coating layer of the optical fiber to ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01S3/00H01S3/02H01S3/04H01S3/042
Inventor 巩马理黄磊黄云火柳强闫平李晨
Owner TSINGHUA UNIV
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