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Highly efficient high power CW and Q-switched Ho:YLF laser

机译:高效大功率连续波和调Q Ho:YLF激光器

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An efficient operation of a Ho:YLF laser pumped by a Tm-doped fibre laser is reported. The research in a continuous-wave (CW) operation was done for two crystals of the same 0.5 at.% Ho dopant concentration and with different lengths (3x3x30 mm(3) and 3x3x50 mm(3)). For an output coupling transmission of 20% and a crystal length of 50 mm, the maximum CW output power of 38.9 W for 81.4 W of incident pump power, corresponding to the slope efficiency of 52.3% and optical-to-optical conversion efficiency of 47.8% (determined with respect to the incident pump power) was achieved. The highest optical-to-optical conversion efficiency of 70.2% with respect to the absorbed pump power was obtained. The influence of a heat-sink cooling water temperature on the CW laser performance was studied. For a Q-switched operation the pulse repetition frequency (PRF) was changed from 2 to 10 kHz. The maximum average output power of 34.1 W at the PRF of 10 kHz was obtained for a 50 mm holmium crystal length. For 2 kHz PRF and 71.9 W of incident pump power, pulse energies of 13.7 mJ with a 21 ns FWHM pulse width corresponding to 652 kW peak power were recorded.
机译:据报道,掺有Tm的光纤激光器泵浦的Ho:YLF激光器有效运行。连续波(CW)操作的研究是针对具有相同的0.5 at。%Ho掺杂剂浓度和不同长度(3x3x30 mm(3)和3x3x50 mm(3))的两个晶体进行的。对于20%的输出耦合传输和50 mm的晶体长度,对于81.4 W的入射泵浦功率,最大CW输出功率为38.9 W,对应于52.3%的斜率效率和47.8的光电转换效率达到了%(相对于入射泵功率确定)。相对于吸收的泵浦功率,获得了最高的70.2%的光学转换效率。研究了散热器冷却水温度对连续波激光器性能的影响。对于Q开关操作,脉冲重复频率(PRF)从2变为10 kHz。对于50 mm的crystal晶体长度,在10 kHz的PRF时可获得34.1 W的最大平均输出功率。对于2 kHz PRF和71.9 W的入射泵浦功率,记录了13.7 mJ的脉冲能量和21 ns的FWHM脉冲宽度,对应于652 kW峰值功率。

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