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Adjustable X-Ray Mirrors Based on Plastic Electroactive Polymer Actuators for the Lynx Mission

机译:基于塑料电活性聚合物执行器的可调节X射线镜,用于Lynx任务

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The proposed soft X-ray mission Lynx will combine sub-arcsecond imaging capabilities with a roughly one order of magnitude larger collection area than NASA's Chandra observatory. Achieving such a large increase of the effective area while keeping costs manageable requires the use of adjustable optics for in-orbit corrections for mirror deformations. In this contribution, we report on the possibility to use a novel class of low-voltage thin-film actuators based on electroactive polymers for the active control. Electroactive polymers can produce high strains at low voltages and are able to correct for the deformations of submillimeter-thick mirror shells. The films can be fabricated at comparatively low costs and offer an easily scalable technology which can implemented by industrial partners. With processing temperatures below 140°C. electroactive polymer films can be deposited on glass mirror substrates without the risk of thermally induced imperfections. The combination of excellent angular resolutions and a large mirror will enable Lynx to detect the first accreting black holes, to study the evolution of galaxies and growth of cosmic structure, and to detect and constrain the properties of the Warm-Hot Intergalactic Medium (WHIM) theorized to account for the large fraction of missing baryonic matter in the Universe.
机译:所提出的软X射线任务Lynx将使亚弧秒成像能力结合,比NASA Chandra天文台的收集区域大约一个级别大小。在保持成本的情况下实现了如此大的增加,同时保持成本可管理需要使用可调节光学器件进行镜像变形的轨道校正。在这一贡献中,我们报告了使用基于用于主动控制的电活性聚合物的新型低压薄膜致动器的可能性。电活性聚合物可以在低电压下产生高菌株,并且能够校正外腔厚镜壳的变形。薄膜可以在相对低的成本下制造,并且提供一种可以由工业合作伙伴实施的易于可扩展的技术。加工温度低于140°C。可以在玻璃镜衬底上沉积电活性聚合物膜,而不会产生热诱导缺陷的风险。优异的角度分辨率和大镜子的组合将使Lynx能够检测第一个压缩的黑洞,研究星系的演变和宇宙结构的生长,并检测和约束温热的间介质(突发奇潮)的性质理论考虑了宇宙中缺少的放鼻松的大部分。

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