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Optimization of thickness uniformity of optical coatings on a conical substrate in a planetary rotation system

机译:行星旋转系统中圆锥形基底上光学涂层厚度均匀性的优化

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摘要

For a coating machine with a planetary rotation system and counterrotating shadowing mask configuration, a shadowing mask was designed using a numerical optimization algorithm to control the thickness uniformity of optical coatings formed on conical substrate. Single-layer magnesium fluoride (MgF_2) and antireflective (AR) coating at 193 nm were fabricated on a convex conical substrate holder (with diameter 225 mm, apex angle 140 deg, and height 41 mm) by thermal evaporation. Thickness distribution determined from the transmittance spectra of single-layer MgF_2 thin films on BK7 slices showed that uniformities better than 99.3% were experimentally achieved with the designed counterrotating shadowing mask. From the reflectance spectra, uniform optical performance was also obtained for the 193 nm AR coating deposited on fused-silica substrates.
机译:对于具有行星旋转系统和反向旋转阴影掩模配置的镀膜机,使用数值优化算法设计阴影掩模以控制在圆锥形基材上形成的光学涂层的厚度均匀性。通过热蒸发在凸形圆锥形基板支架(直径225 mm,顶角140度,高度41 mm)上制造193 nm的单层氟化镁(MgF_2)和抗反射(AR)涂层。由单层MgF_2薄膜在BK7切片上的透射光谱确定的厚度分布表明,使用设计的反向旋转荫罩实验性地获得了优于99.3%的均匀性。从反射光谱,还获得了沉积在熔融石英衬底上的193 nm AR涂层的均匀光学性能。

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