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An efficient continuous-wave and Q-switched single-pass two-stage Ho:YLF MOPA system

机译:高效的连续波和调Q单通两级Ho:YLF MOPA系统

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We report on the efficient operation of an Ho:YLF laser single-pass in-band pumped by a Tm-doped fiber laser. The research in a continuous-wave (CW) operation in an oscillator scheme was done for a crystal of 0.5 at% Ho dopant concentration and the length of 30 mm for the output coupler transmittances of T-OC=10%, 20%, 30% and 40%. At room temperature, for the output coupling transmission of 20%, the maximum CW output power of 24.5 W for 82.5 W of incident pump power, corresponding to the slope efficiency of 35.4% and optical-to-optical conversion efficiency of 29.7% was achieved. The highest slope efficiency of 81.6% with respect to absorbed pump power was obtained. Carrying out the measurements of the laser spectrum, for the out-coupling transmittance of T-OC=30%, we observed a very short time wavelength shift between 2051.5 and 2062A nm in an Ho:YLF laser operation. Trying to fully utilize the pump power unabsorbed by the active crystal in an oscillator stage, an amplifier system based on two additional Ho:YLF crystals was developed. For the output coupling transmission of 40% the slope efficiency increased from 31.5% in an oscillator scheme to 47.3% with respect to the incident pump power in a two-stage amplifier scheme with a beam quality parameter of M-2 better than 1.1. For a Q-switched operation, for the maximum incident pump power and the pulse repetition frequency (PRF) of 1 kHz, pulse energies of 18.5 mJ with a 22 ns FWHM pulse width corresponding to 841 kW peak power in the amplifier system were recorded. (C) 2014 Elsevier Ltd. All rights reserved.
机译:我们报告了掺有Tm的光纤激光器泵浦的Ho:YLF激光器单通带内的有效运行。振荡器方案中连续波(CW)操作的研究是针对0.5at%Ho掺杂浓度的晶体以及30mm长度的T-OC的输出耦合器透射率= 10%,20%,30 %和40%。在室温下,对于20%的输出耦合传输,对于82.5 W的入射泵浦功率,最大CW输出功率为24.5 W,对应于35.4%的斜率效率和29.7%的光电转换效率。相对于吸收的泵浦功率,获得了最高的81.6%的斜率效率。进行激光光谱的测量,对于T-OC的输出耦合透射率= 30%,我们在Ho:YLF激光操作中观察到了非常短的时间波长在2051.5和2062A nm之间的位移。为了在振荡级中充分利用有源晶体未吸收的泵浦功率,开发了一种基于另外两个Ho:YLF晶体的放大器系统。对于40%的输出耦合传输,相对于光束质量参数M-2优于1.1的两级放大器方案中的入射泵浦功率,斜率效率从振荡器方案中的31.5%提高到47.3%。对于Q开关操作,对于最大入射泵浦功率和1 kHz的脉冲重复频率(PRF),记录了18.5 mJ的脉冲能量,其22 ns FWHM脉冲宽度对应于放大器系统中的841 kW峰值功率。 (C)2014 Elsevier Ltd.保留所有权利。

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