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Time-Encoded Gamma-Ray Imaging Using a 3-D Position-Sensitive CdZnTe Detector Array

机译:使用3D位置敏感的CdZnTe检测器阵列的时间编码伽马射线成像

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摘要

The gamma-ray response of thick pixelated CdZnTe detectors varies spatially but is relatively constant as a function of time. Detector irregularities arise from flaws in the material, electrode fabrication, and gaps between the detectors in an array. These nonuniformities generate artifacts in coded aperture images that can obscure a source of interest. This article presents the theory, design, and demonstration of a 3-D CdZnTe-based time-encoded imager. Experimental results show the gamma-ray images of point-like and extended Co-57 and HEU-metal sources formed using a spatially nonuniform 3-D CdZnTe detector array and moving coded aperture mask. Image signal-to-noise ratio (SNR) for a point source was within 10% of its statistical limit at 250k counts.
机译:厚像素化CdZnTe检测器的伽马射线响应在空间上变化,但随时间变化相对恒定。检测器的不规则性是由材料缺陷,电极制造以及阵列中的检测器之间的间隙引起的。这些不均匀性会在编码的光圈图像中生成伪影,从而可能掩盖关注的光源。本文介绍了基于3-D CdZnTe的时间编码成像器的理论,设计和演示。实验结果表明,使用空间不均匀的3-D CdZnTe检测器阵列和移动编码孔径掩模形成的点状和扩展Co-57和HEU金属源的伽马射线图像。点源的图像信噪比(SNR)在250k计数下处于其统计极限的10%以内。

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