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Optical coatings behavior under y irradiation for space applications

机译:光学涂层行为根据Y辐射空间应用

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摘要

Optical coatings are widely used in optical instrumentation for astronomical and space applications. The required optical components are similar to the ones necessary for ground-based instrumentation: antireflection coatings, mirrors, transmission filters. In addition, depending on the specific application, resistance to the radiation induced damage is needed. The analysis here is limited to optical components for instruments to be used for Earth observation from the polar sun-synchronous orbit, where they will withstand a total radiation dose of 50 Gy accumulated during a typical lifetime of 5 years. In this work a set of optical coating materials were submitted to γ irradiation at the ~(60)Co radioisotope source (ENEA Research Center) in order to simulate the hostile radiation environment in which they will be employed. The selected coatings are made with a multilayer structure that contains oxide layers and/or metal layers. Before the coating irradiation, the behavior of single-layer materials was investigated by comparing their reflectance and transmittance before and after the γ-ray exposure. Results are reported for a number of oxide single layers (SiO_2, HfO_2, Y_2O_3), metal layers (Ag, Al) and multilayer coatings made with these materials, by the physical vapor deposition (PVD) technique. The behavior of different substrates (glass, quartz) is also compared.
机译:光学涂层广泛用于天文和空间应用的光学仪器中。所需的光学部件类似于地基仪器所需的光学组件:抗反射涂层,镜子,透射滤波器。此外,根据具体应用,需要对辐射引起的抗辐射造成损坏。这里的分析仅限于用于从极地太阳同步轨道用于地球观察的仪器的光学部件,在那里它们将承受50 Gy的总辐射剂量,在典型的寿命为5年。在这项工作中,将一组光学涂料在〜(60)Co放射性同位素源(ENEA研究中心)的γ辐射中提交至γ辐射,以模拟将采用它们的敌对辐射环境。所选择的涂层由多层结构制成,其含有氧化物层和/或金属层。在涂层照射之前,通过比较γ射线暴露前后的反射率和透射率来研究单层材料的行为。通过物理气相沉积(PVD)技术,报道了一些氧化物单层(SiO_2,HFO_2,Y_2O_3),金属层(Ag,Al)和用这些材料制成的多层涂层。还比较了不同基板(玻璃,石英)的行为。

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