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Energy response of Athena WFI prototype detectors

机译:雅典娜WFI原型探测器的能量响应

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The Wide Field Imager instrument of ESA's next X-ray observatory Athena will consist of specifically developed DEPFET detectors which enable a low noise and fast readout operation. In order to confirm the required spectroscopic performance within the energy range of 0.2 keV to 15 keV. various emission lines were probed with prototype detectors on a 64×64 pixel scale. These detectors include the first sensors representative for flight with respect to the transistor layout and fabrication technology. Four different detectors were tested and exhibit, a Fano noise limited spectral performance. The required energy resolution was achieved by all detectors even at readout times as fast as 2.5μs/row. Additionally, one of the detectors achieved an outstanding performance of a FWHM below 45eV at C Kα (277eV) and 6.1 μs/row. Complementary to the measurements, the charge cloud size was determined as a function of the photon energy based on Monte Carlo simulations. These simulations enable a quantification of the effective charge loss at different energies due to the thresholds applied at the event recombination.
机译:ESA的下一个X射线天文台雅典娜的宽视场成像仪将由专门开发的DEPFET检测器组成,该检测器可实现低噪声和快速读取操作。为了确认在0.2 keV至15 keV的能量范围内所需的光谱性能。使用原型检测器以64×64像素规模探测各种发射线。这些检测器包括代表传感器在晶体管布局和制造技术方面飞行的第一传感器。测试了四个不同的检测器,并显示出Fano噪声限制的光谱性能。所有检测器均达到了所需的能量分辨率,即使在读取速度高达2.5μs/行时也是如此。此外,其中一个检测器在CKα(277eV)和6.1μs/行下实现了低于45eV的FWHM的出色性能。作为测量的补充,根据蒙特卡洛模拟确定电荷云的大小与光子能量的关系。这些模拟能够量化由于事件重组所应用的阈值而导致的不同能量下的有效电荷损失。

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