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Recent Progresses on Insights of Laser Damage Mechanisms and Influence of Contamination in Optics

机译:最近进展激光损伤机制见解和污染在光学中的影响

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In high power laser system, laser-induced damage threshold (LIDT) in optical coating is very important for obtaining high performances. The dependence of LIDT on the pulse duration and the repetition rate are well known phenomena. But recently, LIDT was found to have strong temperature dependences in the bulk, surface of substrates, and in coatings. This temperature dependence of LIDT was carefully measured, and the damage formation model was constructed regarding to this temperature dependence. This paper introduces LFEX laser system for First Ignition scheme in the laser fusion. A large-scale pulse compression chamber was designed and constructed, and segmented grating system has been employed for large-scale pulse compressor. This compressor provided good pulse compression performances, but we observed a heavy oil-contamination of optics in this chamber. We have analyzed contaminants and evaluated the effects of the contamination. We also developed new cleaning methods to remove contamination from the coating, and the quantitative analysis of contamination on LIDT was made. We have investigated the characteristics of LIDT in dielectric coatings under the controlled contamination. LIDT of coating drops to 1/2 in the saturated toluene vapor at room temperature.
机译:在高功率激光系统中,光学涂层中的激光诱导的损伤阈值(LIDT)对于获得高性能非常重要。 LIDT对脉冲持续时间的依赖性和重复率是众所周知的现象。但最近,盖子被发现具有强烈的温度依赖性在块状,表面的表面和涂层中。仔细测量盖子的这种温度依赖性,并且损坏地层模型是关于这种温度依赖性的。本文介绍了LFEX激光系统,用于激光融合中的第一点火方案。设计和构造了大规模的脉冲压缩室,并且已经采用了分段光栅系统用于大型脉冲压缩机。该压缩机提供了良好的脉冲压缩性能,但我们观察到该腔室中的光学污染。我们已经分析了污染物并评估了污染的影响。我们还开发了新的清洁方法,以除去涂层的污染,并制备滤网污染的定量分析。我们已经在受控污染下调查了LIDT在介电涂层中的特性。在室温下涂层的涂层液滴下降至1/2。

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