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Evaluation of Energy Loss and Charge Sharing in Cadmium Telluride Detectors for Photon-Counting Computed Tomography

机译:碲化镉探测器中用于光子计数计算机断层扫描的能量损失和电荷共享的评估

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We present estimates of energy loss and charge sharing for a pixelated cadmium telluride (CdTe) detector used for photon-counting spectral computed tomography (CT). In a photon-counting pixelated CdTe detector, several physical effects lead to detected events with reduced energies, including Compton scattering, fluorescence emission, charge diffusion, trapping of charge carriers and slow-hole-motion-induced incomplete charge collection. Charge sharing is the result of the lost energy being collected by adjacent pixels. We simulated the photon transport and the charge-collection process with a Monte Carlo-based simulation and evaluated these effects on the detector performance. The trapping effect and poor hole collection have been studied together using an analytical model. We also investigated the detector response under the influence of only the fluorescence effect. We conclude that the charge sharing effects should be taken into account when the pixel is smaller than $1~{hbox {mm}}^{2}$. A straightforward way to decrease the double counting of X-rays from events with charge sharing is to increase the electronic threshold. However, increasing the threshold comes at the cost of losing low-energy events, which is undesirable, at least in applications such as pediatric imaging.
机译:我们提出了用于光子计数光谱计算机断层扫描(CT)的像素化碲化镉(CdTe)检测器的能量损失和电荷共享的估计。在以光子计数的像素化CdTe检测器中,几种物理效应会导致检测到的事件的能量降低,包括康普顿散射,荧光发射,电荷扩散,电荷载流子捕获以及由慢孔运动引起的不完全电荷收集。电荷共享是相邻像素收集到的能量损失的结果。我们使用基于蒙特卡洛的模拟来模拟光子传输和电荷收集过程,并评估了这些对探测器性能的影响。使用分析模型一起研究了陷阱效应和不良的空穴收集。我们还研究了仅在荧光效应影响下的检测器响应。我们得出结论,当像素小于 $ 1〜{hbox {mm}} ^ {2} $ 。减少带有电荷共享事件的X射线重复计数的一种直接方法是提高电子阈值。然而,增加阈值是以损失低能量事件为代价的,这至少在诸如儿科成像的应用中是不希望的。

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