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Transition-edge sensor pixel parameter design of the microcalorimeter array for the X-ray Integral Field Unit on Athena

机译:雅典娜X射线整体场装置的微量电压仪阵列的过渡边缘传感器像素参数设计

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The focal plane of the X-ray integral field unit (X-IFU) for ESA's Athena X-ray observatory will consist of ~ 4000 transition edge sensor (TES) x-ray microcalorimeters optimized for the energy range of 0.2 to 12 keV. The instrument will provide unprecedented spectral resolution of ~ 2.5 eV at energies of up to 7 keV and will accommodate photon fluxes of 1 mCrab (90 cps) for point source observations. The baseline configuration is a uniform large pixel array (LPA) of 4.28" pixels that is read out using frequency domain multiplexing (FDM). However, an alternative configuration under study incorporates an 18 × 18 small pixel array (SPA) of 2" pixels in the central ~ 36" region. This hybrid array configuration could be designed to accommodate higher fluxes of up to 10 mCrab (900 cps) or alternately for improved spectral performance (< 1.5 eV) at low count-rates. In this paper we report on the TES pixel designs that are being optimized to meet these proposed LPA and SPA configurations. In particular we describe details of how important TES parameters are chosen to meet the specific mission criteria such as energy resolution, count-rate and quantum efficiency, and highlight performance trade-offs between designs. The basis of the pixel parameter selection is discussed in the context of existing TES arrays that are being developed for solar and x-ray astronomy applications. We describe the latest results on DC biased diagnostic arrays as well as large format kilo-pixel arrays and discuss the technical challenges associated with integrating different array types on to a single detector die.
机译:ESA的雅典娜X射线天文台的X射线积分场单元(X-IFU)的焦平面将由〜4000过渡边缘传感器(TES)X射线微量微量计,优化为0.2至12keV的能量范围。该仪器将提供前所未有的光谱分辨率〜2.5eV的能量,最高可达7keV,并且将容纳1 mcRAb(90cps)的光子通量,以进行点源观察。基线配置是使用频域多路复用(FDM)读出的4.28“像素的均匀大像素阵列(LPA)。然而,正在研究的替代配置包括18×18小像素阵列(SPA)为2”像素在中央〜36“区域。该混合阵列配置可以设计成适应高达10个McRAb(900cps)的较高助焊剂,或者在低计数中交替地用于改善光谱性能(<1.5eV)。在本文中,我们报告在优化的TES像素设计中以满足这些提出的LPA和SPA配置。特别详细说明了选择重要参数的细节,以满足特定的任务标准,如能量分辨率,计数率和量子效率,以及突出显示设计之间的性能权衡。在为太阳能和X射线天文应用开发的现有TES阵列的上下文中讨论了像素参数选择的基础。我们描述了E DC偏置诊断阵列的最新结果以及大格式的千像素阵列,并讨论与将不同阵列类型集成到单个探测器模具的技术挑战。

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