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首页> 外文期刊>IEEE Transactions on Nuclear Science >Experimental Benchmark of Electron Trajectory Reconstruction Algorithm for Advanced Compton Imaging
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Experimental Benchmark of Electron Trajectory Reconstruction Algorithm for Advanced Compton Imaging

机译:电子轨迹重建算法在先进康普顿成像中的实验基准

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Electron-tracking-based Compton imaging of gamma rays reduces the background level of the backprojected Compton image through the additional measurement of the initial momentum vector of the Compton electron. This reduction in image background has the potential for the detection of weaker sources in a complex background radiation field. Electron-tracking-based Compton imaging was demonstrated recently in solid-state detectors through the use of scientific Si charge-coupled devices (CCDs) with excellent position and energy resolution characteristics. In addition, the sensitivity of the electron track reconstruction algorithm has been evaluated extensively on the modeled detector response to Monte-Carlo electron tracks. We have now benchmarked the modeled algorithm sensitivity with our experimentally observed algorithm sensitivity, by measuring CCD electron tracks from a collimated 662 keV gamma-ray source in coincidence with a position-sensitive HPGe detector. For all coincident events the electron momentum vector deduced by the reconstruction algorithm is compared to the electron momentum vector calculated from the measured positions. This measured distribution of angular error of the algorithm agrees well with the angular error distribution calculated from our electron transport and detector models.
机译:通过对康普顿电子的初始动量矢量进行附加测量,基于电子跟踪的伽马射线康普顿成像可降低反投影康普顿图像的背景水平。图像背景的减少可能会在复杂的背景辐射场中检测较弱的光源。最近,通过使用具有出色的位置和能量分辨特性的科学硅电荷耦合器件(CCD)在固态探测器中证明了基于电子跟踪的康普顿成像。另外,已经对建模的检测器对蒙特卡洛电子轨迹的响应进行了广泛的电子轨迹重建算法的灵敏度评估。现在,我们通过与来自位置敏感的HPGe探测器相匹配的662 keV准直伽马射线源测量CCD电子迹线,通过实验观察到的算法灵敏度对模型化的算法灵敏度进行了基准测试。对于所有同时发生的事件,将通过重构算法推导出的电子动量矢量与根据测量位置计算出的电子动量矢量进行比较。该算法测得的角度误差分布与从我们的电子传输和探测器模型计算出的角度误差分布非常吻合。

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