Research on Cosmic Ray Muon Scattering Tomography Simulation and Imaging Algorithm

被引:0
|
作者
Zhi Y. [1 ]
Zhou J. [1 ]
Chen L. [1 ]
Li P. [1 ]
Zhao M. [1 ]
Liu W. [1 ]
Jia S. [1 ]
Zhang Y. [1 ]
Hu S. [1 ]
Yu W. [1 ]
Li X. [1 ]
机构
[1] Key Laboratory of Nuclear Data, China Institute of Atomic Energy, Beijing
来源
Li, Xiaomei (xiao_mei_li@foxmail.com) | 1600年 / Atomic Energy Press卷 / 54期
关键词
Cosmic ray muon scattering tomography; Imaging algorithm; Micromegas detector;
D O I
10.7538/yzk.2020.youxian.0217
中图分类号
学科分类号
摘要
The feasibility of rapid nuclear material inspection with cosmic ray muon scattering tomography system based on Micromegas detector was verified, and essential parameters of the laboratory cosmic ray muon tomography system prototype were estimated. A simulation program based on Geant4 simulation toolkit was developed to simulate the physical processes and propagation tracks of cosmic ray muons, and responses of Micromegas detector to cosmic ray muons. Based on the simulation data, two main cosmic ray muon scattering tomography algorithms were implemented and improved. According to the simulation and imaging results, the tomography system of 1 m×1 m size is able to inspect nuclear materials shielded by heavy elements within 10 min. The tomography system of 10 cm×10 cm size is estimated to have a trigger rate of 0.16 s-1. To obtain a clearer imaging result from the 10 cm×10 cm tomography system, the detector position resolution needs to reach 300 μm, and the actual measurement time needs to be at least 20 h with the detector gain of 1 000. © 2020, Editorial Board of Atomic Energy Science and Technology. All right reserved.
引用
收藏
页码:990 / 997
页数:7
相关论文
共 11 条
  • [1] OLIVE K A, AGASHE K, AMSLER C, Et al., Review of particle physics, Chin Phys C, 38, 9, pp. 378-385, (2014)
  • [2] GRIEDER P K F., Cosmic rays at earth, (2001)
  • [3] SHULTZ L J., Cosmic ray muon tomography, (2003)
  • [4] HOHLMANN M, GNANVO K, GRASSO L, Et al., Design and construction of a first prototype muon tomography system with GEM detectors for the detection of nuclear Contraband, IEEE Nuclear Science Symposium Conference Record, (2009)
  • [5] AGOSTINELLI S, ALLISON J, AMAKO K, Et al., Geant4: A simulation toolkit, Nucl Instrum Methods A, 506, pp. 250-303, (2003)
  • [6] HAGMANN C, LANGE D, VERBEKE J, Et al., Cosmic-ray shower library (CRY)
  • [7] GDML user's guide version 2.7
  • [8] CHYTRACEK R, MCCORMICK J, POKORSKI W, Et al., Geometry description markup language for physics simulation and analysis applications, IEEE Trans Nucl Sci, 53, 5, pp. 2892-2896, (2006)
  • [9] VEENHOF R., Garfield: Simulation of gaseous detectors
  • [10] BRUN R, RADEMAKERS F., ROOT users guide