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Investigation on X-ray Photocurrent Response of CdZnTe Photon Counting Detectors

机译:CdZnTe光子计数探测器的X射线光电流响应研究

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摘要

Counting rate is an important factor for CdZnTe photon counting detectors as high-flux devices. Until recently, there has been a lack of knowledge on the relationship between X-ray photocurrent response and the photon counting performance of CdZnTe detectors. In this paper, the performance of linear array 1 × 16-pixel CdZnTe photon counting detectors operated under different applied biases is investigated. The relation between experimental critical flux and applied bias show an approximate quadratic dependence, which agrees well the theoretical prediction. The underlying relationship among X-ray photocurrents, carrier transport properties, and photon counting performance was obtained by analyzing X-ray current–voltage and time current curves. The typical X-ray photocurrent curve can be divided into three regions, which may be explained by the photoconductive gain mechanism and electric field distortion characteristics. To keep CdZnTe photon counting detectors working in a “non-polarized state”, the applied bias should be set on the left side of the “valley region” (high bias direction) in the X-ray I-V curves. This provides an effective measurement for determining the proper working bias of CdZnTe detectors and screening photon counting detector crystals.
机译:计数率是CdZnTe光子计数检测器作为高通量器件的重要因素。直到最近,关于X射线光电流响应与CdZnTe检测器的光子计数性能之间关系的知识仍然缺乏。本文研究了在不同施加偏压下工作的线性阵列1×16像素CdZnTe光子计数检测器的性能。实验临界通量和施加的偏压之间的关系显示出近似的二次依赖性,这与理论预测相吻合。通过分析X射线电流-电压和时间电流曲线,获得了X射线光电流,载流子传输性能和光子计数性能之间的潜在关系。典型的X射线光电流曲线可以分为三个区域,这可以用光电导增益机制和电场畸变特性来解释。为了使CdZnTe光子计数检测器处于“非偏振状态”,应在X射线I-V曲线的“谷区域”(高偏置方向)的左侧设置偏置。这为确定CdZnTe检测器的正确工作偏置并筛选光子计数检测器晶体提供了有效的方法。

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