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Investigation of laser induced damage of dielectric optical coatings

机译:激光对介电光学涂层的损伤研究

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Investigation of laser-induced damage (LID) of dielectric optical coatings was reviewed in this paper. Several methods for evaluating characters of LID were developed, especially for the determinations of laser-induced damage threshold (LIDT) and the detections of absorption based on surface thermal lensing (STL) technology of optical coatings. Defect was deemed to be the initial source of several previous damage mechanisms, and was the main factor restricting the laser damage resistance of optical coatings. A pulsed laser induced damage model with a spherical absorptive inclusion was proposed in order to obtain the nature, size and distribution of defects. Attentions were paid to find out the origins of damage mechanism transformation from one laser mode to another. Moreover, interests were focused on distinct damage behaviors of ultraviolet (UV) lasers. Deposition temperature and annealing process in vacuum chamber had obvious influences on LIDT of the third harmonic Nd:YAG laser coatings. At the end of this paper, several effective methods for improving LIDT were put forward, such as cleaning substrate, improving deposition process, adding protective layers, optimizing coating stacks based on temperature field theory, as well as laser conditioning.
机译:本文综述了介电光学涂层的激光损伤(LID)研究。开发了几种评估LID特性的方法,特别是用于确定激光诱导损伤阈值(LIDT)和基于光学涂层的表面热透镜(STL)技术检测吸收的方法。缺陷被认为是先前几种损伤机制的最初来源,并且是限制光学涂层耐激光损伤性的主要因素。为了获得缺陷的性质,大小和分布,提出了具有球形吸收性夹杂物的脉冲激光诱导损伤模型。注意寻找破坏机理从一种激光模式转变为另一种激光模式的起源。此外,人们的兴趣集中在紫外线(UV)激光器的独特损坏行为上。真空室中的沉积温度和退火工艺对三次谐波Nd:YAG激光镀层的LIDT有明显的影响。最后,提出了几种改善LIDT的有效方法,如清洁基板,改善沉积工艺,增加保护层,基于温度场理论优化涂层堆叠以及激光调节。

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