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Integrated modeling of a semirigid hybrid mirror and a highly actuated membrane mirror as candidates for the next generation space telescope

机译:用于下一代空间望远镜的候选人的综合建模和高度启动的膜镜

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Advanced space telescopes which will eventually replace the Hubble Space Telescope (HST) will have 8-20 m diameter apertures. Primary mirrors (PM's) of these dimensions will fold to fit intot he space launcher. By necessity,t hese mirrors will be extremely lightweight and flexible. The historical approaches to mirror designs, where the mirror is made as rigid as possible to maintain figure and to serve as the anchor for the entire telescope, can no longer be applied. New design concepts and verifications will depend entirely on analytical methods to predict optical performance. Integrated modeling of the structural, thermal, and optical performance of such mirrors is becoming the tool for advanced space mirror designs. This paper discusses some of the tasks and study results which are currently the basis for the design and integrated modeling studies of the Next Generation Space Telescope (NGST).
机译:先进的空间望远镜最终将更换哈勃空间望远镜(HST)的直径为8-20米。这些尺寸的主要镜子(PM)将折叠以适合他的空间发射器。通过必要性,T Hese镜子将极其轻巧和灵活。镜像设计的历史方法,其中镜子尽可能刚性地保持图形并用作整个望远镜的锚,不能施加。新的设计概念和验证完全取决于分析方法来预测光学性能。这种镜子的结构,热和光学性能的集成建模正在成为高级空间镜设计的工具。本文讨论了一些任务和研究结果,目前是下一代空间望远镜(NGST)的设计和综合建模研究的基础。

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