为未来的x射线望远镜开发薄镜壳的挑战

T. Döhring, M. Stollenwerk, Qingqing Gong, L. Proserpio, A. Winter, P. Friedrich
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引用次数: 6

摘要

由于科学界的挑战性要求,以前使用的反射镜技术无法满足未来x射线望远镜的要求。因此,正在开发生产x射线反射镜的新技术方法。在欧洲,计划中的x射线天文台雅典娜的技术基线是硅孔光学的激进新方法。美国宇航局最近发射的NuSTAR任务使用了由薄弯曲玻璃制成的分段反射镜外壳,成功地证明了x射线反射镜玻璃成型技术的可行性。为了降低风险,欧洲也在开发薄玻璃热塌缩技术,作为轻型x射线望远镜的替代技术。高精度镜面制造需要具有挑战性的技术发展;几个设计交易和趋势设定的决定需要作出,并在本文中讨论。最近开始的跨学科项目intrast(天文反射镜技术工业转移的缩写)也研究了玻璃反射镜系列生产的一些新的技术和经济方面。该项目是马克斯-普朗克地外物理研究所和阿沙芬堡应用科学大学的合作项目,其目标是克服为未来的x射线望远镜制造薄镜壳的挑战。作为本课题的第一项课题,开展了薄玻璃镜面基板低应力涂层的研制,提出了相应的技术途径和初步成果。
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The challenge of developing thin mirror shells for future x-ray telescopes
Previously used mirror technologies are not able to fulfil the requirements of future X-ray telescopes due to challenging requests from the scientific community. Consequently new technical approaches for X-ray mirror production are under development. In Europe the technical baseline for the planned X-ray observatory ATHENA is the radical new approach of silicon pore optics. NASA´s recently launched NuSTAR mission uses segmented mirrors shells made from thin bended glasses, successfully demonstrating the feasibility of the glass forming technology for X-ray mirrors. For risk mitigation also in Europe the hot slumping of thin glasses is being developed as an alternative technology for lightweight X-ray telescopes. The high precision mirror manufacturing requires challenging technical developments; several design trades and trend-setting decisions need to be made and are discussed within this paper. Some new technical and economic aspects of the intended glass mirror serial production are also studied within the recently started interdisciplinary project INTRAAST, an acronym for "industry transfer of astronomical mirror technologies". The goal of the project, embedded in a cooperation of the Max-Planck-Institute for extraterrestrial Physics and the University of Applied Sciences Aschaffenburg, is to master the challenge of producing thin mirror shells for future X-ray telescopes. As a first project task the development of low stress coatings for thin glass mirror substrates have been started, the corresponding technical approach and first results are presented.
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