首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A 4 x 4 array module of position-sensitive virtual Frisch-grid CdZnTe detectors for gamma-ray imaging spectrometers
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A 4 x 4 array module of position-sensitive virtual Frisch-grid CdZnTe detectors for gamma-ray imaging spectrometers

机译:用于伽玛射线成像光谱仪的位置敏感虚拟Frisch网格CdZnTe检测器的4 x 4阵列模块

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Arrays of position-sensitive virtual Frisch-grid CdZnTe (CZT) detectors offer an economical approach to making high efficiency and high energy resolution gamma cameras for spectroscopy and imaging of radioactive sources. There are many application areas for such instruments including gamma-rays astronomy, medical and industrial imaging, nonproliferation and nuclear safeguards. Here we present the test results from a 4 × 4 array module coupled to the front-end ASIC. The array houses 16 detectors made of 6×6×20 mm~3 CZT crystals. Each crystal is encapsulated inside an ultrathin polyester shell and furnished with four 5-mm-wide charge-sensing pads placed near the anode on each side of the detector. The pad's signals are used to measure X-Y coordinates while the cathode signals give the interaction depths (Z coordinates). Combined together the signals provide 3D position information of the interaction points which can be used to correct the detector response non-uniformity. This allows developers to use standard grade (unselected) CZT crystals while retaining high spectroscopic performance comparable with that of the H3D pixelated detectors. The array's design provides flexibility to replace individual detectors and extend their sizes, potentially increasing upwards of 4 cm in height. We started development of position-sensitive VFG detectors several years ago and today this technology has reached a high-maturity level and is ready to use in practical applications.
机译:位置敏感的虚拟Frisch-grid CdZnTe(CZT)检测器阵列提供了一种经济的方法来制造用于光谱和放射源成像的高效率和高能量分辨率伽马相机。这种仪器有很多应用领域,包括伽马射线天文学,医学和工业成像,防扩散和核保障。在这里,我们介绍了耦合到前端ASIC的4×4阵列模块的测试结果。该阵列容纳16个由6×6×20 mm〜3 CZT晶体制成的探测器。每个晶体都封装在超薄聚酯壳内,并配备有四个5毫米宽的电荷感应垫,它们位于检测器每一侧的阳极附近。垫的信号用于测量X-Y坐标,而阴极信号则提供相互作用深度(Z坐标)。组合在一起的信号提供了相互作用点的3D位置信息,可用于校正检测器响应的不均匀性。这使开发人员可以使用标准等级(未选择)的CZT晶体,同时保留与H3D像素化探测器可比的高光谱性能。该阵列的设计可灵活地替换单个检测器并扩展其尺寸,从而有可能将其高度增加到4 cm以上。几年前,我们开始开发位置敏感型VFG检测器,如今,该技术已达到成熟度水平,可以在实际应用中使用。

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