Status of the Cryogenic Anti-Coincidence Detector (CryoAC) for the Athena X-Ray Integral Field Unit (X-IFU)

IF 1.7 3区 物理与天体物理 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Lorenzo Ferrari Barusso;Edvige Celasco;Matteo De Gerone;Flavio Gatti;Daniele Grosso;Kifayat Niazi;Manuela Rigano;Adriano Bevilacqua;Luigi Parodi;Fabio Siccardi;Matteo D'Andrea;Simone Lotti;Claudio Macculi;Luigi Piro;Andrea Argan;Gabriele Minervini;Guido Torrioli;Daniele Brienza;Elisabetta Cavazzuti;Angela Volpe
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引用次数: 0

Abstract

The Cryogenic Anti-Coincidence detector (CryoAC) is a critical component of the Athena X-ray Integral Field Unit (X-IFU), in order to fully exploit the instrument performance in the pursuit of high-resolution X-ray spectroscopy with Transition Edge Sensor (TES) detectors. Athena will be the upcoming large X-ray observatory by the European Space Agency (ESA) spanning the energy range of 0.2 to 12 keV. Recently, the mission has successfully undergone a redefinition process to align with new parameters set by ESA, and the launch is now scheduled for the mid-2030 s. The X-ray Integral Field Unit (X-IFU) represents one of the two instrumental components within the payload, functioning as a cryogenic spectrometer with a spectral resolution of about 4 eV at 7 keV. In this configuration, the CryoAC serves to mitigate the impact of cosmic ray-induced events on the spectrometer TES detectors, which compromises the sensitivity of X-ray measurements. The detector aims to identify and veto non-X-ray events, allowing measurement of faint or distant X-ray sources that will be submerged by background events. In particular, we will present the design and first experimental results of a new CryoAC sample, namely DM#144, developed on the basis of the experience gained with the last CryoAC prototypes. It is a possible candidate for the CryoAC DM1.1, the model to be tested in the future X-IFU FPA Demontration Model 1.1 campaign. Our goal is to provide a comprehensive overview of the current status of the CryoAC for the Athena X-IFU TES detector, offering valuable insights into the ongoing development an design changes of the detector.
雅典娜x射线积分场单元(X-IFU)低温反符合探测器(CryoAC)的现状
低温反巧合探测器(CryoAC)是雅典娜x射线积分场单元(X-IFU)的关键组成部分,为了充分利用仪器性能,追求高分辨率x射线光谱与过渡边缘传感器(TES)探测器。雅典娜将是欧洲航天局(ESA)即将推出的大型x射线天文台,能量范围为0.2至12千电子伏特。最近,该任务成功地经历了重新定义过程,以与欧空局设定的新参数保持一致,现在计划在2030年代中期发射。x射线积分场单元(X-IFU)代表有效载荷内两个仪器组件之一,作为低温光谱仪,光谱分辨率约为4 eV, 7 keV。在这种配置中,CryoAC可以减轻宇宙射线引起的事件对光谱仪TES探测器的影响,从而降低x射线测量的灵敏度。该探测器旨在识别和否决非x射线事件,允许测量将被背景事件淹没的微弱或遥远的x射线源。特别是,我们将介绍一种新的CryoAC样品的设计和第一次实验结果,即DM#144,它是在最后的CryoAC原型的经验基础上开发的。它是CryoAC DM1.1的可能候选模型,该模型将在未来的X-IFU FPA演示模型1.1活动中进行测试。我们的目标是全面概述雅典娜X-IFU TES探测器的CryoAC现状,为探测器的持续开发和设计变更提供有价值的见解。
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来源期刊
IEEE Transactions on Applied Superconductivity
IEEE Transactions on Applied Superconductivity 工程技术-工程:电子与电气
CiteScore
3.50
自引率
33.30%
发文量
650
审稿时长
2.3 months
期刊介绍: IEEE Transactions on Applied Superconductivity (TAS) contains articles on the applications of superconductivity and other relevant technology. Electronic applications include analog and digital circuits employing thin films and active devices such as Josephson junctions. Large scale applications include magnets for power applications such as motors and generators, for magnetic resonance, for accelerators, and cable applications such as power transmission.
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