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带有声光调制器和Cr²⁺:ZnS可饱和吸收体的双波长调Q Ho:LuAG激光器。

Doubly Q-switched Ho:LuAG laser with acoustic-optic modulator and Cr²⁺:ZnS saturable absorber.

作者信息

Cui Z, Duan X M, Yao B Q, Yang H Y, Li J, Yuan J H, Dai T Y, Li C Y, Pan Y B

出版信息

Appl Opt. 2015 Dec 1;54(34):10272-6. doi: 10.1364/AO.54.010272.

Abstract

A doubly Q-switched (DQS) Ho:LuAG laser resonantly pumped by a 1.91-μm laser was first presented with an acoustic-optic modulator (AOM) and a Cr2+:ZnS saturable absorber. A comparison among the active Q-switched (AQS), passively Q-switched (PQS), and DQS laser performances was carried out. The maximum continuous wave (CW) output power of 6 W with the central wavelength of 2100.65 nm was obtained at an incident pump power of 35.2 W. Compared with CW laser, the AQS, PQS, and DQS lasers shared the same central wavelength of 2098.34 nm under the same incident pump power. The central wavelength of the AQS and DQS lasers remained constant with the change of AOM repetition frequency (RF). When the incident pump power was 35.2 W and the AOM RF was 15 kHz, the DQS Ho:LuAG laser at a maximum RF of 2.13 kHz achieved the maximum average output power of 4.95 W. At the AOM RF of 10 kHz, the DQS Ho:LuAG laser achieved the shortest pulse width of 40.4 ns with the highest peak power of 61.5 kW. At an incident pump power of 35.2 W, the PQS Ho:LuAG laser obtained the shortest pulse width of 46.1 ns, corresponding to the RF of 2.25 kHz. Experiment results showed that the pulse width could be compressed effectively with a significant increase of peak power for a 2-μm DQS laser.

摘要

首次展示了一种由1.91μm激光器共振泵浦的双调Q(DQS)Ho:LuAG激光器,它配备了一个声光调制器(AOM)和一个Cr2+:ZnS饱和吸收体。对主动调Q(AQS)、被动调Q(PQS)和DQS激光器的性能进行了比较。在35.2W的入射泵浦功率下,获得了中心波长为2100.65nm、最大连续波(CW)输出功率为6W的结果。与连续波激光器相比,在相同的入射泵浦功率下,AQS、PQS和DQS激光器的中心波长均为2098.34nm。AQS和DQS激光器的中心波长随AOM重复频率(RF)的变化保持不变。当入射泵浦功率为35.2W且AOM RF为15kHz时,最大RF为2.13kHz的DQS Ho:LuAG激光器实现了4.95W的最大平均输出功率。在AOM RF为10kHz时,DQS Ho:LuAG激光器实现了40.4ns的最短脉冲宽度和61.5kW的最高峰值功率。在35.2W的入射泵浦功率下,PQS Ho:LuAG激光器获得了46.1ns的最短脉冲宽度,对应于2.25kHz的RF。实验结果表明,对于2μm的DQS激光器,脉冲宽度可以有效压缩,同时峰值功率显著增加。

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