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Thermal Modeling of the ATHENA X-IFU Filters

机译:雅典娜X-IFU滤波器的热模型

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The X-IFU instrument of the ATHENA mission requires a set of thermal filters to reduce the photon shot noise onto its cryogenic detector and to protect it from molecular contamination. A set of five filters, operating at different nominal temperatures corresponding to the cryostat shield temperatures, is currently baselined. The knowledge of the actual filter temperature profiles is crucial to have a good estimation of the radiative load on the detector. Furthermore, a few filters may need to be warmed-up to remove contaminants and it is necessary to ensure that a threshold temperature is reached throughout the filters surface. For these reasons, it is fundamental to develop a thermal modeling of the full set of filters in a representative configuration. The baseline filter is a polyimide membrane 45 nm thick coated with 30 nm of high-purity aluminum, mechanically supported by a metallic honeycomb mesh. In this paper, we describe the implemented thermal modeling and report the results obtained in different studies: (ⅰ) a trade-off analysis on how to reach a minimum target temperature throughout the outer filter, (ⅱ) a thermal analysis when varying the emissivity of the filter surfaces, and (ⅲ) the effect of removing one of the filters.
机译:ATHENA任务的X-IFU仪器需要一套热过滤器,以减少进入低温探测器的光子散粒噪声并保护其免受分子污染。当前以一组五个过滤器为基准,它们在与低温恒温器护罩温度相对应的不同标称温度下工作。实际过滤器温度曲线的知识对于正确估计检测器上的辐射负载至关重要。此外,可能需要预热一些过滤器以去除污染物,并且有必要确保在整个过滤器表面达到阈值温度。由于这些原因,开发具有代表性配置的整套过滤器的热模型是至关重要的。基线过滤器是45 nm厚的聚酰亚胺膜,涂有30 nm的高纯度铝,并由金属蜂窝网机械支撑。在本文中,我们描述了已实现的热模型并报告了在不同研究中获得的结果:(ⅰ)关于如何在整个外部过滤器中达到最低目标温度的权衡分析,(ⅱ)改变发射率时的热分析(ⅲ)移除其中一个过滤器的效果。

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