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Role of tool marks inside spherical mitigation pit fabricated by micro-milling on repairing quality of damaged KH2PO4 crystal

机译:微铣加工球形缓蚀坑内工具标记对修复受损KH2PO4晶体质量的作用

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摘要

Repairing initial slight damage site into stable structures by engineering techniques is the leading strategy to mitigate the damage growth on large-size components used in laser-driven fusion facilities. For KH2PO4 crystals, serving as frequency converter and optoelectronic switch-Pockels cell, micro-milling has been proven the most promising method to fabricate these stable structures. However, tool marks inside repairing pit would be unavoidably introduced due to the wearing of milling cutter in actual repairing process. Here we quantitatively investigate the effect of tool marks on repairing quality of damaged crystal components by simulating its induced light intensification and testing the laser-induced damage threshold. We found that due to the formation of focusing hot spots and interference ripples, the light intensity is strongly enhanced with the presence of tool marks, especially for those on rear surfaces. Besides, the negative effect of tool marks is mark density dependent and multiple tool marks would aggravate the light intensification. Laser damage tests verified the role of tool marks as weak points, reducing the repairing quality. This work offers new criterion to comprehensively evaluate the quality of repaired optical surfaces to alleviate the bottleneck issue of low laser damage threshold for optical components in laser-driven fusion facilities.
机译:通过工程技术将最初的轻微损坏部位修复成稳定的结构是减轻激光驱动聚变设备中使用的大型部件损坏增长的主要策略。对于用作变频器和光电开关普克尔斯盒的KH2PO4晶体,微铣削已被证明是制造这些稳定结构的最有前途的方法。然而,由于在实际的修理过程中铣刀的磨损,不可避免地会在修理坑内引入工具痕迹。在这里,我们通过模拟其诱导的光强度并测试激光诱导的损伤阈值,来定量研究工具标记对受损晶体组件修复质量的影响。我们发现,由于聚焦热点和干扰纹波的形成,使用工具标记(尤其是背面的工具标记)会大大增强光强度。此外,工具标记的负面影响取决于标记密度,并且多个工具标记会加剧光强度。激光损伤测试验证了工具标记作为薄弱点的作用,从而降低了维修质量。这项工作为全面评估修复后的光学表面的质量提供了新的标准,从而减轻了激光驱动聚变设备中光学组件的低激光损伤阈值的瓶颈问题。

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