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Development of iridium coated x-ray mirrors for astronomical applications

机译:天文应用的铱涂层X射线镜的研制

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Future space-based X-ray observatories need to be very lightweight for launcher mass constraints. Therefore they will use a reduced mirror thickness, which results in the additional requirement of low coating stress to avoid deformation of the initial precisely shaped mirror substrates. Due to their excellent reflection properties iridium coatings are sometimes applied for grazing incidence mirrors in astronomical X-ray telescopes. At Aschaffenburg University of Applied Sciences the coating of thin iridium films by an RF-magnetron sputtering technique is under development. The work is embedded in collaborations with the Max-Planck-Institute for Extraterrestrial Physics in Germany, the Czech Technical University in Prague, the Osservatorio Astronomico di Brera in Italy, the German Leibniz Institute for Solid State and Materials Research in Dresden, and the French Institute Fresnel. Sputtering with different parameters leads to iridium films with different properties. The current work is focused on the microstructure of the iridium coatings to study the influence of the substrate and of the argon gas pressure on the thin film growing process. Correlations between coating density, surface micro-roughness, the crystalline structure of the iridium layers, and the expected reflectivity of the X-ray mirror as well as coating stress effects are presented and discussed. The final goal of the project is to integrate the produced prototype mirrors into an X-ray telescope module. On a longer timescale measurements of the mirror modules optical performance are planned at the X-ray test facility PANTER.
机译:未来的基于空间的X射线观测者需要对发射器质量约束非常轻便。因此,它们将使用降低的镜面厚度,这导致低涂层应力的额外要求,以避免初始精确成形镜子基板的变形。由于它们的优异反射特性,铱涂层有时用于在天文X射线望远镜中放牧入射镜。在Aschaffenburg Applications Conciences大学,通过RF-磁控溅射技术涂覆薄铱膜。该工作嵌入了德国德国捷克技术大学的Max-Planck-Sextistrial物理学研究所,意大利德国雷布尼兹德国雷布尼兹州德国莱布尼兹研究所的德国莱布尼兹研究所和法国人研究所菲涅耳。用不同参数溅射导致具有不同性质的铱膜。目前的作品专注于铱涂层的微观结构,以研究基板和氩气压力对薄膜生长过程的影响。介绍并讨论了涂层密度,表面微粗糙度,铱层的晶体结构以及X射线镜的预期反射率之间的相关性以及涂层应力效应。该项目的最终目标是将生产的原型镜集成到X射线望远镜模块中。在较长的时间镜测量镜像模块的测量结果上,在X​​射线测试设施肠道上计划了光学性能。

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