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Measurement and prediction of temperature distributions in optical elements in the millikelvin regime

机译:密克尔文状态下光学元件温度分布的测量和预测

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This paper describes analytical and experimental thermal results for a 33.5 cm diameter plano mirror under conditions of small thermal perturbations (steady-state temperature gradients of 10-100 mK). these tests are intended to support verification of specific thermal requriements for a space interferometer. The primary thermal requriement is knowledge/control of temporal changes in mirror gradients to the 1 mK (0.001 K) level. Tests were performed with small heat inputs to the back of the mirror, which was suspended in a thermally-uniform shroud. Correlation of thermal models for both conductively and radiatively-heated test configurations were performed, and results indicate very good agreement between the thermal model predictions and the temperature measuremdents. The modeling uncertainty based on the test correlation is estimated to be +-3 mK for absolute temporal comparisons. Comparisons for temporal change of gradient are shown to be within 1 mK for small perturbations. The paper describes the test setup, test results, model correlation and uncertainty estimates.
机译:本文介绍了在热扰动较小(稳态温度梯度为10-100 mK)下,直径为33.5 cm的平面镜的分析和实验热结果。这些测试旨在支持对空间干涉仪的特定热要求进行验证。主要的热需求是了解/控制镜面梯度随时间变化到1 mK(0.001 K)的程度。使用反射镜后部的少量热量输入进行测试,该反射镜悬挂在热均匀的护罩中。进行了传导和辐射加热测试配置的热模型相关性,结果表明热模型预测与温度测量指标之间具有很好的一致性。对于绝对时间比较,基于测试相关性的建模不确定性估计为+ -3 mK。对于小扰动,梯度随时间变化的比较显示在1 mK以内。本文介绍了测试设置,测试结果,模型相关性和不确定性估计。

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