A high-position-resolution trajectory detector system for cosmic ray muon tomography: Monte Carlo simulation

A high-position-resolution trajectory detector system for cosmic ray muon tomography: Monte Carlo simulation
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用于宇宙射线μ子层析成像的高位置分辨率轨迹探测器系统:蒙特卡罗模拟

DOI:
10.1007/s41605-022-00313-9
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发表时间:
2022-02
影响因子:
0.6
通讯作者:
Long Wei
Long Wei
中科院分区:
--
文献类型:
--
作者:
Jiajia Zhai;Haohui Tang;Xianchao Huang;Shuangquan Liu;Yingjie Wang;Chong Li;Xiuzuo Liang1;Yi Zhang;Meichan Feng;Zhiming Zhang;Long Wei

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目的对基于宇宙线μ子断层成像的高位置分辨率轨道探测器系统进行相关的设计和仿真研究.方法μ子在探测器中的能量沉积随电离路径长度的变化而变化.结果设计了用于μ子成像的亚毫米探测器系统.结论整个研究过程包括影响系统设计的参数选择分析、两种高位置分辨率的塑料闪烁体探测器的设计、不同成像算法的实现以及基于不同成像模型的图像质量评价。它提供了一个解决方案的基础上,高位置分辨率的塑料闪烁体探测器的宇宙射线μ子散射成像。
PurposeThe research focuses on the related designing and simulating the high-position-resolution trajectory detector system based on cosmic ray muon tomography.MethodsThe energy deposition of muon in the detector varies with the length of the ionization path.ResultsThe simulation of the submillimeter detector system was designed for muon imaging. The optimal position resolution of the detector reached 0.6 mm.ConclusionsThe entire research process includes the selection of analysis of parameters affecting system design, designing of two high-position-resolution detectors based on plastic scintillators, implementation of different imaging algorithms and image quality assessment based on different imaging models. It provides a solution based on high positional resolution plastic scintillator detectors for cosmic ray muon scattering imaging.
DOI: 10.1103/physrev.169.201
发表时间: 1968-05
期刊: Physical Review
影响因子: --
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