首页> 外文期刊>Journal of radiological protection: Official journal of the Society for Radiological Protection >A Monte Carlo simulation study for the gamma-ray/neutron dual-particle imager using rotational modulation collimator (RMC)
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A Monte Carlo simulation study for the gamma-ray/neutron dual-particle imager using rotational modulation collimator (RMC)

机译:使用旋转调制准直器(RMC)的伽马射线/中子双粒子成像器的蒙特卡罗模拟研究

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The aim of this work is to develop a gamma-ray/neutron dual-particle imager, based on rotational modulation collimators (RMCs) and pulse shape discrimination (PSD)-capable scintillators, for possible applications for radioactivity monitoring as well as nuclear security and safeguards. A Monte Carlo simulation study was performed to design an RMC system for the dual-particle imaging, and modulation patterns were obtained for gamma-ray and neutron sources in various configurations. We applied an image reconstruction algorithm utilizing the maximum-likelihood expectation-maximization method based on the analytical modeling of source-detector configurations, to the Monte Carlo simulation results. Both gamma-ray and neutron source distributions were reconstructed and evaluated in terms of signal-to-noise ratio, showing the viability of developing an RMC-based gamma-ray/neutron dual-particle imager using PSD-capable scintillators.
机译:这项工作的目的是开发一种基于旋转调制准直器(RMC)和脉冲形状识别(PSD)闪烁体的伽马射线/中子双粒子成像仪,用于放射性监测以及核安全和保障。进行了蒙特卡罗模拟研究,设计了用于双粒子成像的RMC系统,并获得了各种配置下伽马射线源和中子源的调制模式。我们将基于源探测器配置分析建模的最大似然期望最大化方法的图像重建算法应用于蒙特卡罗模拟结果。根据信噪比重建和评估了伽马射线和中子源分布,显示了使用PSD闪烁体开发基于RMC的伽马射线/中子双粒子成像仪的可行性。

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