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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Digital performance improvements of a CdTe pixel detector for high flux energy-resolved X-ray imaging
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Digital performance improvements of a CdTe pixel detector for high flux energy-resolved X-ray imaging

机译:用于高通量能量分辨X射线成像的CdTe像素检测器的数字性能改进

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摘要

Photon counting detectors with energy resolving capabilities are desired for high flux X-ray imaging. In this work, we present the performance of a pixelated Schottky Al/p-CdTe/Pt detector (4 × 4) coupled to a custom-designed digital readout electronics for high flux measurements. The detector (4×4×2 mm~3) has an anode layout based on an array of 16 pixels with a geometric pitch of 1 mm (pixel size of 0.6 mm). The 4-channel readout electronics is able to continuously digitize and process the signals from each pixel, performing multi-parameter analysis (event arrival time, pulse shape, pulse height, pulse time width, etc.) even at high fluxes and at different throughput and energy resolution conditions. The spectroscopic response of the system to monochromatic X-ray sources, at both low and high rates, is presented with particular attention to the mitigation of some typical spectral distortions (pile-up, baseline shifts and charge sharing). At a photon counting rate of 520 kcps/pixel, the system exhibits an energy resolution (FWHM at 59.5 keV) of 4.6%, 7.1% and 9% at throughputs of 0.9%, 16% and 82%, respectively. Measurements of Ag-target X-ray spectra also show the ability of the system to perform accurate estimation of the input counting rate up to 1.1 Mcps/pixel. The aim of this work is to point out, beside the appealing properties of CdTe detectors, the benefits of the digital approach in the development of high-performance energy resolved photon counting (ERPC) systems for high flux X-ray imaging.
机译:对于高通量X射线成像,需要具有能量分辨能力的光子计数检测器。在这项工作中,我们介绍了像素化的肖特基Al / p-CdTe / Pt检测器(4×4)与定制设计的数字读出电子设备的性能,以进行高通量测量。检测器(4×4×2 mm〜3)具有基于16个像素的阵列的阳极布局,其几何间距为1 mm(像素大小为0.6 mm)。 4通道读取电子设备能够连续数字化和处理每个像素的信号,即使在高通量和不同通量下也能执行多参数分析(事件到达时间,脉冲形状,脉冲高度,脉冲时间宽度等)和能量分辨率条件。在低速和高倍率下,系统对单色X射线源的光谱响应都表现出对降低某些典型光谱畸变(堆积,基线偏移和电荷共享)的关注。在520 kcps /像素的光子计数速率下,系统的能量分辨率(59.5 keV时的FWHM)分别为4.6%,7.1%和9%,吞吐量分别为0.9%,16%和82%。 Ag-目标X射线光谱的测量结果也表明系统具有对高达1.1 Mcps /像素的输入计数率进行准确估计的能力。这项工作的目的是指出,除了CdTe探测器具有吸引人的特性外,数字方法在开发用于高通量X射线成像的高性能能量分辨光子计数(ERPC)系统方面的优势。

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