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Optothermal stability of large ULE and Zerodur mirrors

机译:大ULE和Zerodur镜子的光热稳定性

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Marshall Space Flight Center's (MSFC) X-ray and Cryogenic Test Facility (XRCF) has tested the optothermal stability of two low-CTE, large-aperture mirrors in a thermal vacuum chamber. The mirrors deformed from several causes such as: thermal gradients, thermal soaks, coefficient of thermal expansion (CTE) gradients, CTE mismatch, and stiction. This paper focuses on how the aforementioned conditions affected the surface figure of the large optics while in vacuum at temperatures ranging from 230 to 310 K (-43 to 37 °C). The presented data, conclusions, and taxonomy are useful for designing mirrors and support structures for telescopes. The data is particularly useful for telescopes that require extreme dimensional stability or telescopes that operate at a temperature far from ambient.
机译:马歇尔空间飞行中心(MSFC)X射线和低温测试设施(XRCF)已经在热真空室中测试了两个低CTE,大孔径镜的光热稳定性。镜子从几个原因变形,例如:热梯度,热浸泡,热膨胀系数(CTE)梯度,CTE不匹配和静态。本文侧重于上述条件如何影响大型光学器件的表面图,而在50至310k(-43至37℃)的温度下真空。所提出的数据,结论和分类物可用于设计望远镜的镜子和支撑结构。该数据对于需要在远离环境的温度下操作的极端尺寸稳定性或望远镜的望远镜特别有用。

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