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Gamma-ray imaging with position-sensitive HPGe detectors

机译:位置敏感型HPGe探测器的伽马射线成像

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摘要

Due to advances in manufacturing large and highly segmented HPGe detectors along with the availability of fast and high-precision digital electronics, it is now possible to build efficient and high-resolution Compton cameras. Two-dimensionally segmented semi-conductor detectors along with pulse-shape analysis allow to obtain three-dimensional positions and energies of individual gamma-ray interactions. By employing gamma-ray tracking procedures it is possible to determine the scattering sequence in the detector and ultimately to deduce the incident direction of gamma rays without the use of a attenuating collimator. These advanced gamma-ray tracking-based Compton cameras are able not only to image gamma-ray sources with higher sensitivity than collimator-based systems but can increase the sensitivity in finding gamma-ray sources over non-imaging detectors, particularly in complex radiation fields. We have implemented a Compton camera built of a single double-sided strip HPGe detector with a strip pitch size of 2 mm. A three-dimensional position resolution of 0.5 mm at 122 keV by using simple pulse-shape analysis is achieved. We have implemented image reconstruction procedures for search scenarios, which are of interest for national security applications. In addition, we have developed reconstruction procedures to optimize image quality which potentially finds applications in other areas as well.
机译:由于在制造大型且高度细分的HPGe探测器方面的进步以及快速,高精度数字电子设备的可用性,现在有可能制造出高效且高分辨率的Compton摄像机。二维分段半导体检测器以及脉冲形状分析允许获得单个伽马射线相互作用的三维位置和能量。通过使用伽马射线跟踪程序,可以确定检测器中的散射顺序,并最终推断出伽马射线的入射方向,而无需使用衰减准直仪。这些先进的基于伽玛射线跟踪的康普顿相机不仅能够以比基于准直仪的系统更高的灵敏度对伽玛射线源成像,而且可以提高在非成像探测器上发现伽玛射线源的灵敏度,尤其是在复杂的辐射场中。我们已经实现了一个康普顿相机,该相机由单个双面带状HPGe检测器构建而成,带状检测间距为2 mm。通过使用简单的脉冲形状分析,可以在122 keV处获得0.5 mm的三维位置分辨率。我们已经针对搜索场景实施了图像重建程序,这对于国家安全应用很重要。此外,我们还开发了重建程序来优化图像质量,从而有可能在其他领域找到应用。

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