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Muon radiography technology for detecting high-Z materials

Muon radiography technology for detecting high-Z materials
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摘要 This paper studies the possibility of using the scattering of cosmic muons to identify threatening high-Z materials. Various scenarios of threat material detection are simulated with the Geant4 toolkit. PoCA (Point of Closest Approach) algorithm reconstructing muon track gives 3D radiography images of the target material. Z-discrimination capability, effects of the placement of high-Z materials, shielding materials inside the cargo, and spatial resolution of position sensitive detector for muon radiography are carefully studied. Our results show that a detector position resolution of 50 μm is good enough for shielded materials detection. This paper studies the possibility of using the scattering of cosmic muons to identify threatening high-Z materials. Various scenarios of threat material detection are simulated with the Geant4 toolkit. PoCA (Point of Closest Approach) algorithm reconstructing muon track gives 3D radiography images of the target material. Z-discrimination capability, effects of the placement of high-Z materials, shielding materials inside the cargo, and spatial resolution of position sensitive detector for muon radiography are carefully studied. Our results show that a detector position resolution of 50 μm is good enough for shielded materials detection.
出处 《Chinese Physics C》 SCIE CAS CSCD 2010年第5期610-614,共5页 中国物理C(英文版)
基金 Supported by National Natural Science Foundation of China (10575046,10775062) Program for New Century Excellent Talents in University
关键词 cosmic ray muons muon radiography PoCA algorithm high-Z materials multiple scattering cosmic ray muons, muon radiography, PoCA algorithm, high-Z materials, multiple scattering
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参考文献7

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