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Localized CO2 laser damage repair of fused silica optics

机译:熔融石英光学元件的局部CO2激光损伤修复

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A technique has been developed for the localized treatment of laser damage sites in fused silica optics by CO2 laser melt-flow smoothing, by using a 50 to 125 mu m diameter beam in a regime that avoids mass removal by ablation. A detailed calibration of the laser irradiance for the threshold ablation of craters was carried out for a range of beam diameters and pulses in the 20 mu s to 200 ms range. The results agree with a thermal model that also provides estimates of the melt depth for the different irradiation conditions. Smoothing trials for glass melting at irradiance values just below the ablation threshold irradiance were conducted to determine the optimum conditions and limits for the smoothing process. The technique has been found to remove damage pits up to a depth of 0.5 mu m, while the small melt depth associated with localized treatment limits the smoothing to a <= 5 mu m lateral size. (c) 2006 Optical Society of America.
机译:通过使用直径为50至125μm的光束,避免了通过消融去除质量的方案,已经开发出了一种技术,用于通过CO2激光熔体流动平滑对熔融石英光学器件中的激光损伤部位进行局部处理。在20μs到200ms范围内的光束直径和脉冲范围内,对陨石的阈值烧蚀进行了激光辐照度的详细校准。结果与热模型吻合,该模型也提供了不同照射条件下熔体深度的估计。进行了在刚好低于消融阈值辐照度的辐照度值下玻璃熔化的平滑试验,以确定平滑过程的最佳条件和极限。已发现该技术可去除损伤凹痕,直至深度为0.5微米,而与局部处理相关的较小熔体深度将平滑度限制为小于等于5微米的横向尺寸。 (c)2006年美国眼镜学会。

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