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Spectroscopic performances of 16 x 16 pixel CZT imaging hard-X-ray detectors

机译:16 x 16像素CZT成像硬X射线探测器的光谱性能

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摘要

Cadmium zinc telluride (CZT) pixel detectors show very good spectral and spatial resolution and are suitable for use in compact hard-X-ray sensors operated without cryogenics. One of the most appealing astrophysical applications is their use as focal-plane detectors for multilayer hard-X-ray telescopes operating in the (10-80) keV energy band. This paper reports experimental results obtained from two 16 x 16 pixellated CZT detectors (10 x 10 x 1 mm~3 and 10 x 10 x 2 mm~3 single crystals) with 450 μm pixel operated at room temperature using standard commercial read-out electronics. We have investigated about energy resolution and material properties of both detectors. Both arrays gave similar results showing an energy resolution less than 5% at 59.5 keV and a good material uniformity. The good energy resolution of both detectors demonstrates as the pixellated anode structure reduces (small pixel effect) the incomplete charge collection due to severe hole trapping typically present in CZT crystals. A calibration curve, obtained using three different energies, shows a linear response of the detectors.
机译:碲化镉锌(CZT)像素检测器显示出非常好的光谱和空间分辨率,适用于在没有低温的情况下运行的紧凑型硬X射线传感器。天体物理最吸引人的应用之一是用作在(10-80)keV能带中运行的多层硬X射线望远镜的焦平面探测器。本文报告了使用标准的商业读出电子设备,在室温下运行的,具有450μm像素的两个16 x 16像素化CZT检测器(10 x 10 x 1 mm〜3和10 x 10 x 2 mm〜3单晶)获得的实验结果。 。我们已经研究了两种探测器的能量分辨率和材料特性。两个阵列都给出了相似的结果,表明在59.5 keV时的能量分辨率小于5%,并且材料均匀性良好。两个像素探测器的良好能量分辨率证明,由于CZT晶体中通常存在严重的空穴俘获,像素化阳极结构减少了(小像素效应)不完全的电荷收集。使用三种不同能量获得的校准曲线显示了检测器的线性响应。

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