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- W50552597 abstract "We previously reported development of multilayer infrared-operating electrochromic thermal-control surface devices for spacecraft. One problem preventing use of such devices for spacecraft in low earth orbit (LEO) is the adverse effect of atomic oxygen on the exposed surface layer. In this paper we show that zinc selenide can be used as both an infrared transparent optical coating and an AO protective surface. Zinc selenide films of different thicknesses were exposed to an electron cyclotron resonance (ECR) generated oxygen plasma to simulate LEO. To permit realistic device performance simulations, ZnSe optical constants, before and after oxygen plasma exposure, were determined using variable angle spectroscopic ellipsometry from the vacuum ultraviolet at 146 nm through the middle infrared to 40 μm. Comparing the pre- and post- oxygen plasma exposure data, few changes were observed in the middle infrared region, while drastic changes were seen in the vacuum ultraviolet through visible to near infrared. This suggests that chemical changes upon plasma exposure are found mainly in a thin layer near the surface. As the proposed application is for infrared coating applications, ZnSe will indeed be useful for space infrared applications. Performance simulations of ZnSe coated infrared-operating electrochromic thermal-control surfaces confirm this conclusion." @default.
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- W50552597 date "2006-03-09" @default.
- W50552597 modified "2023-10-16" @default.
- W50552597 title "ZnSe Coatings for Spacecraft Electrochromic Thermal Control Surfaces" @default.
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- W50552597 doi "https://doi.org/10.1007/1-4020-2595-5_44" @default.
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