首页> 外文期刊>Journal of Low Temperature Physics >The Cryogenic AntiCoincidence Detector for the ATHENA X-IFU: Design Aspects by Geant4 Simulation and Preliminary Characterization of the New Single Pixel
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The Cryogenic AntiCoincidence Detector for the ATHENA X-IFU: Design Aspects by Geant4 Simulation and Preliminary Characterization of the New Single Pixel

机译:雅典娜X-IFU的低温抗菌探测器:GEANT4的设计方面的设计方面和新单像素的初步表征

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The ATHENA observatory is the second large-class ESA mission, in the context of the Cosmic Vision 2015-2025, scheduled to be launched on 2028 at L2 orbit. One of the two planned focal plane instruments is the X-ray Integral Field Unit (X-IFU), which will be able to perform simultaneous high-grade energy spectroscopy and imaging over the 5 arcmin FoV by means of a kilo-pixel array of transition-edge sensor (TES) microcalorimeters, coupled to a high-quality X-ray optics. The X-IFU sensitivity is degraded by the particle background, induced by primary protons of both solar and cosmic rays' origin and secondary electrons. A Cryogenic AntiCoincidence (CryoAC) TES-based detector, located 1 mm below the TES array, will allow the mission to reach the background level that enables its scientific goals. The CryoAC is a 4-pixel detector made of Silicon absorbers sensed by Iridium TESs. We currently achieve a TRL 3-4 at the single-pixel level. We have designed and developed two further prototypes in order to reach TRL 4. The design of the CryoAC has been also optimized using the Geant4 simulation tool. Here we will describe some results from the Geant4 simulations performed to optimize the design and preliminary test results from the first of the two detectors, 1 cm area, made of 65 Ir TESs.
机译:雅典娜天文台是第二级ESA使命,在2015-2025宇宙愿景的背景下,计划于2028年在L2轨道上推出。两个计划的焦平面仪器之一是X射线积分场单元(X-IFU),其能够通过千像素阵列通过5 arcmin Fov来执行同时高级能量光谱和成像过渡边缘传感器(TES)微量微量仪,耦合到高质量的X射线光学器件。 X-IFU敏感性由太阳能和宇宙射线的原始电子和二次电子的主要质子引起的粒子背景。在TES阵列下方1毫米的基于低温的抗渗(Cryoac)TES的探测器将使任务达到实现其科学目标的背景水平。 Cryoac是由铱苔丝感测的硅吸收器制成的4像素探测器。我们目前在单像素级别实现TRL 3-4。我们设计并开发了两个进一步的原型,以便到达TRL 4. Cryoac的设计也使用Geant4仿真工具进行了优化。在这里,我们将描述从执行的GEANT4模拟中描述一些结果,以优化由65 IR苔丝1厘米的第一次检测器中的第一次探测器1厘米区域的设计和初步测试结果。

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