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Characterization of nodular and thermal defects in hafnia/silica multilayer coatings using optical photothermal and atomic force microscopy

机译:利用光学光热和原子力显微镜表征氧化f /二氧化硅多层涂层中的结节和热缺陷

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Abstract: Multilayer coatings manufactured from metallic hafnium and silica sources by reactive electron beam deposition, are being developed for high fluence optics in a fusion lasers with a wavelength of 1053 nm and a 3 ns pulse length. Damage threshold studies have revealed a correlation between laser damage and nodular defects, but interestingly laser damage is also present in nodule-free regions. Photothermal studies of optical coatings reveal the existence of defects with strong optical absorption in nodule-free regions of the coating. A variety of microscopic techniques were employed to characterize the defects for a better understanding of the thermal properties of nodular defects and role of thermal defects in laser damage. Photothermal microscopy, utilizing the surface thermal lensing technique, was used to map the thermal characteristics of 3 mm $MUL 3 mm areas of the coatings. High resolution subaperture scans, with a 1 $mu@m step size and a 3 $mu@m pump beam diameter, were conducted on the defects to characterize their photothermal properties. Optical and atomic force microscopy was used to visually identify defects and characterize their topography. The defects were then irradiated to determine the role of nodular and thermal defects in limiting the damage threshold of the multilayer. !19
机译:摘要:正在开发一种通过反应性电子束沉积由金属ha和二氧化硅制成的多层涂层,用于波长为1053 nm,脉冲长度为3 ns的聚变激光器中的高通量光学器件。损伤阈值研究表明,激光损伤与结节缺损之间存在相关性,但有趣的是,无结节区域也存在激光损伤。光学涂层的光热研究表明,在涂层的无结节区域中存在强烈吸收光的缺陷。为了更好地理解球状缺陷的热特性以及热缺陷在激光损伤中的作用,采用了各种显微技术来表征缺陷。使用表面热透镜技术的光热显微镜用于绘制3 mm 3 MUL 3 mm涂层区域的热特性图。对缺陷进行了高分辨率亚孔径扫描,步长为1μm,泵浦光束直径为3μm,以表征其光热特性。光学和原子力显微镜用于视觉识别缺陷并表征其形貌。然后辐照缺陷以确定结节和热缺陷在限制多层损伤阈值中的作用。 !19

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