LD直接泵浦中红外脉冲固体激光器功率改进研究
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1.西南技术物理研究所,四川 成都 610083;2.新疆大学 材料科学与工程学院,新疆 乌鲁木齐 830046

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Research of power improvement of a LD directly-pumped mid-infrared pulse solid-state laser
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1.Southwest Institute of Technical Physics, Chengdu, 610083, China;2.School of Materials Science and Engineering, Xinjiang University, Urumchi, 830046, China

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This work was supported by the National Key Research and Development Program of China (No. 2021YFA0718803).

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    摘要:

    LD直接泵浦固体激光器具有原理简单、体积小和结构紧凑等优点,该结构用于实现3~5 μm波段的中红外激光输出时具备较大优势。然而,相较于常规近红外LD泵浦的固态激光器,LD直接泵浦中波红外固体激光器存在着较大的量子缺陷,可能导致较大的热损伤并限制其功率的进一步提升。为解决这一问题,本文提出了减小晶体比表面积和改善晶体结构释放热能的方法,并确定了氟化钇钡激光晶体(Ho3+:BY2F8)的最佳长度。通过COMSOL软件进行了热力学仿真模拟,研究了不同长度激光晶体的冷却结构。实验结果显示,采用长度略短于冷却器的激光晶体可以提高输出功率并较大缓解激光晶体内部的热应力。实验表明,在泵浦重复频率为15 Hz、脉冲宽度为90 μs时,在激光器输出波长约为3.9 μm时的单脉冲能量为7.28 mJ,此值约为长度为10 mm晶体输出能量的3倍。这一研究结果为未来构建实用化的中波红外激光器铺平了道路。

    Abstract:

    A LD directly-pumped solid-state laser is considered to be one of the most promising mid-infrared light sources because of its simple principle, small size, and compact structure for the generation of mid-infrared (MIR) lasers in the 3~5 μm band. However, the quantum defect of LD directly-pumped MIR solid-state lasers will be much larger than that of ordinary near-infrared LD pumped solid-state lasers, which may lead to thermal damage and limit their development. In order to solve this problem, the methods of reducing the specific surface area of the crystal and improving the thermal energy released by the crystal structure are discussed, and the optimal length of the laser crystal is determined. The cooling structures of barium yttrium fluoride laser crystals (Ho3+:BY2F8) of different lengths were studied by thermal simulation using COMSOL software. The experimental results show that the output power can be increased and the thermal stress in the laser crystal can be alleviated by using the laser crystal whose length is slightly shorter than that of the cooler. The final experiment shows that when the pump repetition rate is 15 Hz and the pulse width is 90 μs, the single pulse energy is 7.28 mJ at the output wavelength of 3.9 μm, which is about 3 times as large as that of the crystal with the length of 10 mm. Such results should be another breakthrough of our team since the first directly-pumped solid-state MIR laser was realized more than a year ago. It might pave the way for the construction of a feasible MIR laser in the near future.

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  • 收稿日期:2024-03-13
  • 最后修改日期:2024-07-21
  • 录用日期:2024-04-16
  • 在线发布日期: 2024-07-15
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