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FUSED SILICA GLASS ARTICLE HAVING IMPROVED RESISTANCE TO LASER DAMAGE

机译:熔融石英玻璃制品提高了对激光损伤的抵抗力

摘要

A fused silica glass article having greater resistance to damage induced by exposure to laser radiation such as laser induced wavefront distortion at deep ultraviolet (DUV) wavelengths, and behaviors such as fluence dependent transmission, which are related to intrinsic defects in the glass. The improved resistance to laser damage may be achieved in some embodiments by loading the glass article with molecular hydrogen (H2) at temperatures of about 400° C. or less, or 350° C. or less. The combined OH and deuteroxyl (OD) concentration may be less than 10 ppm by weight. In other embodiments, the improved resistance may be achieved by providing the glass with 10 to 60 ppm deuteroxyl (OD) species by weight. In still other embodiments, improved resistance to such laser damage may be achieved by both loading the glass article with molecular hydrogen at temperatures of about 350° C. or less and providing the glass with less than 10 ppm combined OH and OD, or 10 to 60 ppm OD by weight.
机译:一种熔融石英玻璃制品,其具有更大的抵抗力,所述抵抗力是由暴露于激光辐射引起的损害所致,例如在深紫外(DUV)波长下的激光诱导的波阵面畸变,以及诸如与注量有关的透射率的行为,这些行为与玻璃中的固有缺陷有关。在一些实施方案中,可以通过在约400℃或更低或350℃或更低的温度下向玻璃制品加载分子氢(H 2 )来实现对激光损伤的改善的抵抗力。 OH和氘氧基(OD)的总浓度可小于10ppm重量。在其他实施方案中,可以通过向玻璃提供按重量计10至60ppm的氘代(OD)物质来实现改善的电阻。在其他实施方式中,可以通过在约350℃或更低的温度下向玻璃制品中加载分子氢,并为玻璃提供小于10ppm的OH和OD或10至100ppm的组合氢,来实现对这种激光损伤的改进的抵抗力。 OD 60重量%。

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