全硅反射镜的激光调理效果

Laser Damage Pub Date : 2022-12-02 DOI:10.1117/12.2641172
Lukas Ramalis, R. Buzelis, Gustė Dolmantaitė, T. Tolenis
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引用次数: 0

摘要

光学元件是激光系统的主要组成部分,由于光学电阻率限制了激光系统的总输出功率。光束直径尺寸的增大可以补偿元件的光学性能,但也会导致激光系统尺寸的增大。因此,光学涂层的任何改进都会对更高的输出功率或降低系统本身的尺寸产生影响。采用掠角沉积法制备了具有低内应力的多孔纳米结构涂层。多层布拉格反射镜仅使用二氧化硅材料形成,以达到高激光诱导损伤阈值。利用激光调节效应,提高了ns波段的光学性能,LIDT值达到180 J/cm2以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser conditioning effect for all-silica mirrors
Optical elements are the main parts in laser system, which limit the total generated output power due to optical resistivity. The increase of beam diameter dimensions may compensate the optical performance of elements, however it leads to the increase of laser system size. Thus, any improvement in optical coatings has impact on either higher output power or lowering the size of system itself. Glancing angle deposition method is presented to produce porous nanostructured coatings, which are characterized by low inner stress. Multilayer Bragg mirrors are formed using only silica material to achieve high laser-induced damage threshold value. Laser conditioning effect is applied, to improve optical performance in ns regime and reach LIDT values over 180 J/cm2.
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