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Electronic Stopping Power for 0.05-10 MeV Protons in a Group of Organic Materials

Electronic Stopping Power for 0.05-10 MeV Protons in a Group of Organic Materials
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摘要 Electronic stopping powers for 0. 05-10 MeV protons in a group of organic materials are systematically calculated. The calculations are based on Ashley's dielectric model, and an evaluation approach of optical energy loss function is incorporated into Ashley's model because no experimental optical data are available for most of the organic materials under consideration. The Barkas-effect correction and Bloch correction are included. The proton stopping powers for the considered organic materials except for mylar in the energy range from 0.05 to 10 MeV are presented for the first time. The results may be useful for studies of various radiation effects in these materials and for space research. Electronic stopping powers for 0. 05-10 MeV protons in a group of organic materials are systematically calculated. The calculations are based on Ashley's dielectric model, and an evaluation approach of optical energy loss function is incorporated into Ashley's model because no experimental optical data are available for most of the organic materials under consideration. The Barkas-effect correction and Bloch correction are included. The proton stopping powers for the considered organic materials except for mylar in the energy range from 0.05 to 10 MeV are presented for the first time. The results may be useful for studies of various radiation effects in these materials and for space research.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2008年第6期2023-2026,共4页 中国物理快报(英文版)
基金 Supported by the Specialized Research Fund for the Doctoral Programme of Higher Education of China under Grant No 20050422038, and the Natural Science Foundation of Shandong Province under Grant No Y2005D02.
关键词 MEAN-FREE-PATH LOW-ENERGY ELECTRONS INELASTIC INTERACTIONS CHARGED PARTICLES CONDENSED MATTER RANGE MODEL GAS MEAN-FREE-PATH LOW-ENERGY ELECTRONS INELASTIC INTERACTIONS CHARGED PARTICLES CONDENSED MATTER RANGE MODEL GAS
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