首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Performance of 8×8×32 and 10×10×32 mm~3 CdZnTe position-sensitive virtual Frisch-grid detectors for high-energy gamma ray cameras
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Performance of 8×8×32 and 10×10×32 mm~3 CdZnTe position-sensitive virtual Frisch-grid detectors for high-energy gamma ray cameras

机译:用于高能伽马光线摄像机的高能伽马射线相机的8×8×32和10×10×32 mm〜3 CDZnte位置敏感虚拟FRISCH-GRID探测器

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摘要

CdZnTe (CZT) crystals with thicknesses up to 20 mm and diameters up to 75 mm have become available from Redlen Technologies, Inc. for making large-volume gamma-ray detectors. The modified growth and optimized annealing conditions allowed Redlen to minimize the dark current and improve the uniformity of CZT crystals. Two detector designs, pixelated (H3D) and position-sensitive virtual Frisch-grid (VFG), have greatly benefitted from the availability of such big crystals. Encouraging results from testing of 40×40×15 mm~3 pixelated detectors were recently reported by the University of Michigan. Here, we evaluated the spectroscopic properties of 8×8×32 and 10×10×32 mm~3 crystals configured as position-sensitive VFG detectors. Both digitized waveforms and an analog ASIC were used to read and process the signals from the detectors and test their spectral- and spatial-resolution. The VFG design provides the flexibility to scale-up the dimensions of the detectors for the desired efficiency, while the position information allows for correcting the detectors' response non-uniformity caused by crystal defects and devices geometry, thereby reducing the instrument cost and making them more feasible for emerging applications in gamma-ray astronomy, nonproliferation, portal screening and nuclear safeguards, where large detector arrays are often required.
机译:Redlen Technologies,Inc,厚度高达20毫米和直径高达75毫米的Cdznte(CZT)晶体可获得大容量伽马射线探测器。改性的生长和优化的退火条件允许红线最小化暗电流并提高CZT晶体的均匀性。两个探测器设计,像素化(H3D)和位置敏感的虚拟Frisch-Grid(VFG),极大地利用了这种大晶的可用性。密歇根大学最近报道了令人鼓舞的40×40×15mm〜3个像素化探测器的结果。在此,我们评估了8×8×32和10×10×32mm〜3晶体的光谱性能,被配置为位置敏感的VFG探测器。数字化波形和模拟ASIC都用于读取和处理来自探测器的信号并测试它们的光谱和空间分辨率。 VFG设计提供了扩大探测器尺寸的灵活性,以获得所需的效率,而位置信息允许校正由晶体缺陷和器件几何形状引起的检测器的响应不均匀性,从而降低仪器成本并制造它们对于伽马射线天文学,不可渗透,门户筛查和核保障的新兴应用更加可行,通常需要大型探测器阵列。

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