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Optimising the multiplex factor of the frequency domain multiplexed readout of the TES-based microcalorimeter imaging array for the X-IFU instrument on the Athena Xray observatory

机译:优化雅典娜X射线天文台X-IFU仪器基于TES的微热量计成像阵列的频域多路复用读数的多路复用因子

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Athena is a space-based X-ray observatory intended for exploration of the hot and energetic universe. One of the science instruments on Athena will be the X-ray Integrated Field Unit (X-IFU), which is a cryogenic X-ray spectrometer, based on a large cryogenic imaging array of Transition Edge Sensors (TES) based microcalorimeters operating at a temperature of 100mK. The imaging array consists of 3800 pixels providing 2.5 eV spectral resolution, and covers a field of view with a diameter of of 5 arc minutes. Multiplexed readout of the cryogenic microcalorimeter array is essential to comply with the cooling power and complexity constraints on a space craft. Frequency domain multiplexing has been under development for the readout of TES-based detectors for this purpose, not only for the X-IFU detector arrays but also for TES-based bolometer arrays for the Safari instrument of the Japanese SPICA observatory. This paper discusses the design considerations which are applicable to optimise the multiplex factor within the boundary conditions as set by the space craft. More specifically, the interplay between the science requirements such as pixel dynamic range, pixel speed, and cross talk, and the space craft requirements such as the power dissipation budget, available bandwidth, and electromagnetic compatibility will be discussed.
机译:雅典娜(Athena)是一个基于太空的X射线天文台,旨在探索炽热而充满活力的宇宙。雅典娜的科学仪器之一将是X射线集成场单元(X-IFU),它是一种低温X射线光谱仪,其基于在过渡温度传感器(TES)上运行的微型量热计的大型低温成像阵列,温度为100mK。成像阵列由提供2.5 eV光谱分辨率的3800个像素组成,并覆盖了直径为5弧分的视场。低温微热量计阵列的多路读数对于遵守航天器的冷却能力和复杂性约束至关重要。为此,正在开发频域多路复用技术以读取基于TES的探测器,不仅用于X-IFU探测器阵列,而且还用于日本SPICA天文台的Safari仪器的基于TES的辐射热计阵列。本文讨论了可用于在航天器设定的边界条件内优化多路复用因子的设计注意事项。更具体地说,将讨论科学要求(例如像素动态范围,像素速度和串扰)与航天器要求(例如功耗预算,可用带宽和电磁兼容性)之间的相互作用。

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