Geant4 Simulation of Muon Absorption in Concrete Layers

Q3 Physics and Astronomy Instruments Pub Date : 2023-05-31 DOI:10.3390/instruments7020017
D. Joffe, Christian Pérez
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Abstract

Muography requires a detailed understanding of the absorption of muons in the material situated between the muon source and the detector. A large-statistics (>3 billion event) Geant4 simulation was run to simulate the absorption of muons in different thicknesses of concrete layers and to determine the effect of the material on the energies of muons that were not absorbed. The Geant4 simulation included a simple detector placed directly behind the absorbing material. A Geant4 simulation was also run for the same detector for alpha sources with no absorbing material and the results of this simulation were compared to the signals from the physical detector built in the laboratory and measured using standard alpha sources. The large-statistics simulations using muons of different energies were compared to the predictions of muon absorption from existing literature. The results of the simulations were in good agreement with both the measured signals from the laboratory as well as the predictions from the literature and the general method is found to be well-suited for studies used for muography involving material layers of uniform thickness.
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Geant4模拟Muon在混凝土层中的吸收
Muography需要详细了解介子在介子源和探测器之间的物质中的吸收。采用大统计量(bbb30亿事件)的Geant4模拟,模拟了不同厚度混凝土层对μ子的吸收,并确定了材料对未被吸收μ子能量的影响。Geant4模拟包括一个简单的探测器,直接放置在吸收材料的后面。在没有吸收材料的情况下,对相同的α源探测器进行了Geant4模拟,并将模拟结果与实验室中构建的物理探测器和使用标准α源测量的信号进行了比较。利用不同能量的μ子进行的大统计模拟与现有文献中对μ子吸收的预测进行了比较。模拟的结果与实验室的测量信号以及文献的预测都很好地一致,并且发现一般方法非常适合用于涉及均匀厚度的材料层的记录研究。
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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