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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Design and study of a coplanar grid array CdZnTe detector for improved spatial resolution
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Design and study of a coplanar grid array CdZnTe detector for improved spatial resolution

机译:用于提高空间分辨率的共面网格阵列CdZnTe检测器的设计和研究

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摘要

Coplanar grid (CPG) CdZnTe detectors have been used as gamma-ray spectrometers for years. Comparing with pixelated CdZnTe detectors, CPG CdZnTe detectors have either no or poor spatial resolution, which directly limits its use in imaging applications. To address the issue, a 2 x 2 CPG array CdZnTe detector with dimensions of 7 x 7 x 5 mm3 was fabricated. Each of the CPG pairs in the detector was moderately shrunk in size and precisely designed to improve the spatial resolution while maintaining good energy resolution, considering the charge loss at the surface between the strips of each CPG pairs. Preliminary measurements were demonstrated at an energy resolution of 2.7-3.9% for the four CPG pairs using 662 keV gamma rays and with a spatial resolution of 3.3 mm, which is the best spatial resolution ever achieved for CPG CdZnTe detectors. The results reveal that the CPG CdZnTe detector can also be applied to imaging applications at a substantially higher spatial resolution.
机译:多年来,共面栅格(CPG)CdZnTe检测器已用作伽马射线光谱仪。与像素化CdZnTe检测器相比,CPG CdZnTe检测器没有空间分辨率差或空间分辨率差,这直接限制了其在成像应用中的使用。为了解决这个问题,制造了尺寸为7 x 7 x 5 mm3的2 x 2 CPG阵列CdZnTe检测器。考虑到每个CPG对的条带之间表面的电荷损失,检测器中的每个CPG对尺寸都会适当缩小,并经过精确设计,以提高空间分辨率,同时保持良好的能量分辨率。初步测量显示,使用662 keV伽马射线对四对CPG对的能量分辨率为2.7-3.9%,空间分辨率为3.3 mm,这是有史以来CPG CdZnTe检测器获得的最佳空间分辨率。结果表明,CPG CdZnTe检测器还可以以更高的空间分辨率应用于成像应用。

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