首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >High-energy diode-pumped alexandrite amplifier development with applications in satellite-based lidar
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High-energy diode-pumped alexandrite amplifier development with applications in satellite-based lidar

机译:高能量二极管泵浦亚历山大放大器开发,应用于卫星的潮流赛

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Efficient, wavelength-tunable diode-pumped alexandrite laser systems offer the potential for a more versatile, satellite-based lidar source compared to fixed wavelength Nd:YAG systems and non-space compliant lamp-pumped alexandrite. In this paper, we develop a strategy to enable the high-energy operation required for atmospheric lidar based on an efficient diode-pumped master oscillator power amplifier (MOM) system design. A novel multipass "diamond" slab amplifier geometry is introduced alongside the experimental results of the world's first diode-pumped alexandrite amplifier producing a gain of 2.13 in a demonstration system. A diode-pumped Q-switched alexandrite oscillator is presented with a record-highest pulse energy of 3.80 mJ. Detailed optimization of a two-stage amplifier design is studied numerically and maximized with temperature, wavelength, and pump pulse duration to produce 50 mJ pulse energy. This forms part of an optimized alexandrite MOPA design capable of high pulse energy, showing the future potential of diode-pumped alexandrite for satellite-based atmospheric lidar. (C) 2020 Optical Society of America
机译:与固定波长Nd:YAG系统和非空间兼容的灯泵浦亚历山大石相比,高效、波长可调谐的二极管泵浦亚历山大石激光系统提供了一种更通用、基于卫星的激光雷达光源的潜力。在本文中,我们开发了一种基于高效二极管泵浦主振荡器功率放大器(MOM)系统设计的策略,以实现大气激光雷达所需的高能操作。介绍了一种新颖的多程“菱形”平板放大器的几何结构,以及世界上第一个二极管泵浦的亚历山大石放大器在演示系统中产生2.13增益的实验结果。提出了一种二极管泵浦调Q亚历山大石振荡器,其最高脉冲能量为3.80mJ。对两级放大器的详细优化设计进行了数值研究,并在温度、波长和泵浦脉冲持续时间的条件下使其最大化,以产生50mJ的脉冲能量。这是能够产生高脉冲能量的优化亚历山大石MOPA设计的一部分,展示了二极管泵浦亚历山大石用于卫星大气激光雷达的未来潜力。(C) 2020美国光学学会

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