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How reduced vacuum pumping capability in a coating chamber affects the laser damage resistance of HfO_2/SiO_2 antireflection and high reflection coatings

机译:涂层室中的真空泵能力降低影响HFO_2 / SIO_2抗反射和高反射涂层的激光损伤性

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Optical coatings with the highest laser damage thresholds rely on clean conditions in the vacuum chamber during the coating deposition process. A low base pressure in the coating chamber, as well as the ability of the vacuum system to maintain the required pressure during deposition, are important aspects of limiting the amount of defects in an optical coating that could induce laser damage. Our large optics coating chamber at Sandia National Laboratories normally relies on three cryo pumps to maintain low pressures for e-beam coating processes. However, on occasion, one or more of the cryo pumps have been out of commission. In light of this circumstance, we decided to explore how deposition under compromised vacuum conditions resulting from the use of only one or two cryo pumps affects the laser-induced damage thresholds of optical coatings. The coatings of this study consist of HfO_2 and SiO_2 layer materials and include antireflection coatings for 527 nm at normal incidence, and high reflection coatings for 527 ran, 45° angle of incidence (AOI), in P-polarization (P-pol).
机译:光学涂层具有最高的激光损伤阈值依赖于涂层沉积过程中真空室中的清洁条件。涂布室中的低基压以及真空系统在沉积期间保持所需压力的能力是限制可能引起激光损伤的光学涂层中的缺陷量的重要方面。我们的桑迪亚国家实验室的大型光学涂层室通常依靠三个Cryo泵来维持用于电子束涂层工艺的低压力。然而,有时,一个或多个Cryo泵已经失去了佣金。鉴于这种情况,我们决定探讨由于只有一个或两个Cryo泵而产生的受影响的真空条件下的沉积如何影响光学涂层的激光诱导的损伤阈值。该研究的涂层由HFO_2和SiO_2层材料组成,并且在正常入射时包括527nm的抗反射涂层,并且在p偏振(P-POL)中,527 ran,45°入射角(AOI)的高反射涂层。

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