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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Improvement of the Compton suppression ratio of a standard BGO suppressor system by a digital pulse shape analysis
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Improvement of the Compton suppression ratio of a standard BGO suppressor system by a digital pulse shape analysis

机译:通过数字脉冲形状分析提高标准BGO抑制器系统的康普顿抑制率

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We have applied a digital pulse shape analysis (DPSA) to Compton suppression for a high-purity coaxial germanium detector (HPGe) as a means of verifying the DPSA method that we have recently developed to extract information for the interaction positions of gamma rays in semiconductor detectors. Our DPSA method is based on chi-square fitting the measured pulse shapes to the calculated ones obtained by the weighting potential method. In order to investigate the performance of the Compton suppression technique using our DPSA method, we have extracted the experimental peak-to-total (P/T) ratios for 662-keV gamma rays emitted from a ~(137)Cs standard source. The experimental P/T ratios were compared with the ones obtained by a conventional BGO suppressor system. Applying the Compton suppression technique using the DPSA method to the BGO suppression system, we could also improve the P/T ratios. The experimental results were in good accord with the ones obtained by a Monte Carlo simulation.
机译:我们已将数字脉冲形状分析(DPSA)应用于高纯同轴锗探测器(HPGe)的康普顿抑制,作为验证我们最近开发的DPSA方法的方法,该方法可提取半导体中伽玛射线的相互作用位置信息探测器。我们的DPSA方法基于卡方拟合,将测得的脉冲形状与通过加权势方法获得的计算出的脉冲形状进行拟合。为了研究使用我们的DPSA方法的康普顿抑制技术的性能,我们提取了从〜(137)Cs标准光源发出的662-keV伽马射线的实验峰峰比(P / T)。将实验的P / T比与通过常规BGO抑制器系统获得的P / T比进行比较。将使用DPSA方法的康普顿抑制技术应用于BGO抑制系统,我们还可以提高P / T比。实验结果与通过蒙特卡洛模拟获得的结果非常吻合。

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