小型化微片阵列式被动调Q全固态激光器
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中国科学院半导体研究所

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基金项目:

国家重点研发计划 (2020YFB1805701),国家自然科学基金 (61934003)


Miniaturized Microchip Array Passive Q-Switched Solid-State Laser
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Institute of Semiconductors,Chinese Academy of Sciences

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the National Key R&D Program of China (2020YFB1805701) and the National Natural Foundation of China (61934003)

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    摘要:

    针对无人机空中目标探测系统的空间限制,提出了一种多光束可分路扫描式被动调Q微片阵列全固态激光器的方案,采用六管芯半导体激光器阵列端面紧凑泵浦长条状的Nd:YAG/Cr4+:YAG键合晶体,在每一路1.6W的泵浦功率下,产生了6路波长1064.4nm、脉冲宽度2.4ns、光束质量为1.39、峰值功率3.75kW、重复频率可达22kHz的输出激光。整个系统的体积仅为2cm×2cm×1.5cm,实现了6路激光同时输出。研究了调Q晶体的初始透过率和输出镜反射率对激光脉冲重复频率和峰值功率的影响机制,重点对泵浦源激光器管芯的出光一致性问题做了深入探讨,通过实验验证了使用一个激光键合晶体产生多路纳秒级窄脉冲激光束的可行性。研究结果以小型化结构实现了被动调Q全固态激光器的多光束出射,对实现激光探测系统光源的小型化和集成化有借鉴意义。

    Abstract:

    To address the spatial constraints in unmanned aerial vehicle target detection systems, a scheme for a multi-beam scanning passively Q-switched microchip array solid-state laser was proposed. This system utilizes a six-core semiconductor laser array to compactly pump a strip-shaped Nd:YAG/Cr4+:YAG bonded crystal. At a pumping power of 1.6W per path, it generates six output laser beams with a wavelength of 1064.4nm, pulse width of 2.4ns, beam quality of 1.39, peak power of 3.75kW, and a repetition frequency up to 22kHz. The entire system's volume is only 2cm × 2cm × 1.5cm, and achieves simultaneous output of six laser paths. The study investigated the impact mechanism of the initial transmittance of the Q-switching crystal and the reflectivity of the output mirror on the laser pulse repetition frequency and peak power, with a particular focus on the uniformity of the laser output from the pump source cores. The feasibility of using a single laser-bonded crystal to produce multiple narrow pulse laser beams in the nanosecond range was experimentally verified. The research results demonstrate the miniaturized structure's ability to achieve multi-beam emission from a passively Q-switched solid-state laser, providing insights for the miniaturization and integration of laser sources in detection systems.

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历史
  • 收稿日期:2023-11-08
  • 最后修改日期:2023-12-24
  • 录用日期:2023-12-28
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