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Energy Recovery of Multiple Charge Sharing Events in Room Temperature Semiconductor Pixel Detectors

机译:室温半导体像素探测器中多电荷共享事件的能量恢复

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摘要

Multiple coincidence events from charge-sharing and fluorescent cross-talk are typical drawbacks in room-temperature semiconductor pixel detectors. The mitigation of these distortions in the measured energy spectra, using charge-sharing discrimination (CSD) and charge-sharing addition (CSA) techniques, is always a trade-off between counting efficiency and energy resolution. The energy recovery of multiple coincidence events is still challenging due to the presence of charge losses after CSA. In this work, we will present original techniques able to correct charge losses after CSA even when multiple pixels are involved. Sub-millimeter cadmium–zinc–telluride (CdZnTe or CZT) pixel detectors were investigated with both uncollimated radiation sources and collimated synchrotron X rays, at energies below and above the K-shell absorption energy of the CZT material. These activities are in the framework of an international collaboration on the development of energy-resolved photon counting (ERPC) systems for spectroscopic X-ray imaging up to 150 keV.
机译:来自电荷共享和荧光串扰的多个巧合事件是室温半导体像素探测器中的典型缺点。使用电荷共享辨别(CSD)和电荷共享添加(CSA)技术的测量能谱中这些扭曲的减轻了这些扭曲,始终是计数效率和能量分辨率之间的权衡。由于CSA之后的电荷损失存在,多个巧合事件的能量回收仍然挑战。在这项工作中,即使涉及多个像素,我们也会提出能够在CSA之后纠正电荷损耗的原始技术。用低于CZT材料的k-shell吸收能量,研究了亚毫米镉 - 碲化物(Cdznte或CDZT)像素探测器,并在低于CZT材料的K-Shell吸收能量的能量下进行增强的同步旋转X射线。这些活动是关于开发能源分辨光子计数(ERPC)系统的国际合作的框架,用于光谱X射线成像高达150 keV。

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