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DEPFET based X-ray Detectors for the MIXS Focal Plane on BepiColombo

机译:BepiColombo上用于MIXS焦平面的基于DEPFET的X射线探测器

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DEPFET Macropixel detectors, based on the fusion of the combined Detector-Amplifier structure DEPFET with a silicon drift chamber (SDD) like drift ring structure, combine the excellent properties of the DEPFETs with the advantages of the drift detectors. As both device concepts rely on the principle of sideways depletion, a device entrance window with excellent properties is obtained at full depletion of the detector volume. DEPFET based focal plane arrays have been proposed for the Focal Plane Detectors for the MIXS (Mercury Imaging X-ray Spectrometer) instrument on BepiColombo, ESAs fifth cornerstone mission, with destination Mercury. MIXS uses a lightweight Wolter Type 1 mirror system to focus fluorescent radiation from the Mercury surface on the FPA detector, which yields the spatially resolved relative element abundance in Mercurys crust. In combination with the reference information from the Solar Intensity X-ray Spectrometer (SIXS), the element abundance can be measured quantitatively as well. The FPA needs to have an energy resolution better than 200 eV FWHM @ 1 keV and is required to cover an energy range from 0.5 keV to 10 keV, for a pixel size of 300 × 300 μm~2. Main challenges for the instrument are the increase in leakage current due to a high level of radiation damage, and the limited cooling resources due to the difficult thermal environment in the mercury orbit. By applying an advanced cooling concept, using all available cooling power for the detector itself, and very high speed readout, the energy resolution requirement can be kept during the entire mission lifetime up to an end-of-life dose of ~ 3 × 10~(10) 10 MeV p / cm~2. The production of the first batch of flight devices has been finished at the MPI semiconductor laboratory, and first prototype modules have been built. The results of the first tests will be presented here.
机译:DEPFET宏像素检测器基于组合的检波放大器结构DEPFET与像漂移环结构之类的硅漂移室(SDD)的融合,结合了DEPFET的优异性能和漂移检测器的优势。由于这两种设备概念都依赖于侧向耗尽的原理,因此在探测器体积完全耗尽时,可以获得具有优异性能的设备入口窗口。已经提出将基于DEPFET的焦平面阵列用于BepiColombo的MIXS(水星成像X射线光谱仪)仪器的焦平面检测器,这是欧洲航天局的第五个基石任务,目标是水星。 MIXS使用轻巧的Wolter Type 1反射镜系统将来自水银表面的荧光辐射聚焦在FPA检测器上,从而产生水银结壳中空间分辨的相对元素丰度。结合太阳强度X射线光谱仪(SIXS)的参考信息,也可以定量测量元素丰度。对于300×300μm〜2的像素,FPA需要具有优于200 eV FWHM @ 1 keV的能量分辨率,并且需要覆盖0.5 keV至10 keV的能量范围。该仪器的主要挑战是由于高水平的辐射破坏而导致漏电流的增加,以及由于汞轨道中艰难的热环境而导致的冷却资源有限。通过采用先进的冷却概念,使用探测器本身所有可用的冷却功率以及超高速读数,可以在整个任务寿命内保持能量分辨率要求,直到寿命终止剂量达到〜3×10〜 (10)10 MeV p / cm〜2。 MPI半导体实验室已经完成了第一批飞行设备的生产,并且已经建造了第一批原型模块。首次测试的结果将在此处显示。

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