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Analysis of Parasitic Oscillation and Evaluation of Amplifier Module of Zig-Zag Slab Laser System

机译:Zig-Zag平板激光系统的寄生振荡分析和放大器模块的评估

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摘要

A high average-power solid-state laser system for attaining the current goal of 20 J output energy at 10 Hz with a pulse width of 10 ns has been designed to demonstrate scalability to 100 J output energy. We proposed ring and cascade layouts that were useful for a four-pass zig-zag slab laser amplification system with effective extraction of output energy from a laser medium of an amplifier module. The reduction of thermal effects and the suppression in thermal fracture were evaluated by the measurements of temperature distributions of the laser slab. We analyzed the parasitic oscillation of the slab laser and found the threshold values of the parasitic oscillation. We designed a dual module system in consideration of these results, and examined the extraction energy from the system that incorporated an assembly of serrated apertures to suppress the laser-induced damage of optical components and the laser slab.
机译:设计了一种高平均功率的固态激光系统,以实现在10 Hz下以20 ns脉冲宽度实现20 J输出能量的当前目标,以证明可扩展至100 J输出能量。我们提出了环形和级联布局,这些布局可用于四通之字形平板激光放大系统,可有效地从放大器模块的激光介质中提取输出能量。通过测量激光平板的温度分布来评估热效应的降低和热断裂的抑制。我们分析了平板激光器的寄生振荡,并找到了寄生振荡的阈值。考虑到这些结果,我们设计了一个双模块系统,并检查了该系统的提取能量,该系统结合了锯齿状孔径组件,以抑制激光对光学组件和激光平板造成的损坏。

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