K-Shell Ionization by C^+-C Collision in keV-MeV Energy Range
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概要
- 論文の詳細を見る
An application of Fano-Lichten's theoretical model for innershell ionizations is made to the case of C^+-C collision. K-shell vacancy production in C atom is interpreted as a result of electronic transition between quasimolecular levels of C_2^+ during collision. The interaction which causes the transition is considered to be the quick rotation of internuclear axis during collision. The calculated cross sections for K-shell ionization are in reasonable agreement with experimental data in absolute value as well as in their incident energy dependence. That is, we have found that the rotation of quasimolecular axis furnishes an appreciable value of matrix element for the electronic transitions. Some discussion is made on the physical properties which affect the process sensitively.
- 社団法人日本物理学会の論文
- 1973-03-05
著者
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MINAMI Fujio
Department of Physics, Tokyo Institute of Technology
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WATANABE Tsutomu
Department of Applied Physics, Nagoya University
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Minami Fujio
Department Of Applied Physics Tokyo Institute Of Technology
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Minami Fujio
Department Of Engineering University Of Tokyo
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KOIKE Masayoshi
Department of Engineering, University of Tokyo
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Koike Masayoshi
Department Of Engineering University Of Tokyo
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Koike Masayoshi
Department Of Applied Physics Faculty Of Engineering University Of Tokyo
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Watanabe Tsutomu
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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