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Low Emittance, Semi-Transparent Coating for Cryogenic Window Applications

机译:低膨胀,半透明涂层用于低温窗口应用

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A warm window surface with a relatively high (>50%) surface emittance can add significant undesired heat loading into a cryogenic test chamber. However, a front surface coating that consists of a very thin adherent layer of evaporated Cr that is overcoated with about 7nm of evaporated Au has been demonstrated to reduce the inherently high emittance of a glass or sapphire window surface down to about 14% , while maintaining a visible transmittance in excess of 55%. The coating possesses reasonably good adhesion and cleaning durability when deposited onto glass or sapphire substrates and has survived multiple temperature cycles between 316K and 20K. The addition of a single layer anti-reflection coating, such as reactively evaporated SiOx, to the otherwise uncoated exterior surface of a cryogenic window produced a further increase in visible wavelength transmittance without altering window emittance. This paper will present measured reflectance, transmittance, and emittance data for the Cr + Au window surface coating relevant to a cryogenic window application.
机译:具有相对较高(> 50%)表面发射率的温暖的窗口表面可以将显着的不希望的热量加载到低温测试室中。然而,已经证明了由大约7nm蒸发的Au过涂覆的蒸发的蒸发Cr的非常薄的蒸发Cr的前表面涂层,以减少玻璃或蓝宝石窗面上固有的高粘合率下降至约14%,同时保持可见透射率超过55%。涂层在沉积到玻璃或蓝宝石基材上时具有合理的粘合性和清洁耐久性,并在316k和20k之间存活多个温度循环。在低温窗口的其他未涂覆的外表面中加入​​单层抗反射涂层,例如反射蒸发的SiOx,在不改变窗口的窗口的情况下进一步增加可见波长透射率。本文将呈现与低温窗口应用相关的CR + Au窗面涂层的测量反射率,透射率和可发射数据。

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