Polarization Degrees for 3p $^{2}P_{3/2}$–3s $^{2}S_{1/2}$ Transition of C3+ (1s23p) Produced in Collisions of C4+ with He and H2
スポンサーリンク
概要
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Charge transfer processes in collisions of C4+ with ground-state He and H2 are investigated using the two-center atomic orbital close-coupling method. Total and state-selective single-electron capture cross sections are obtained for collision energies between 1 and 7 keV/amu, and comparison with available experimental data reveals a good agreement. The polarization degrees for the 3p $^{2}P_{3/2}$–3s $^{2}S_{1/2}$ transition of C3+(3p $^{2}P_{3/2}$) are calculated from the magnetic substate-selective cross sections, in which the cascade effects are also included. The polarization degree in the C4++H2 collisions varies smoothly in the considered energy region and generally agrees with the experimental measurements, while if appears minimum at a collision energy of 2 keV/u for C4++He collisions. By studying the time-evolution of electron capture dynamics in the two systems we have found that the polarization difference between the two systems is caused mainly by interactions at relatively small internuclear distances, and then modified by the Stark effect of target ions.
- 2010-06-15
著者
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Xue Ping
Department Of Chemistry Jinan University
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Liu Ling
Institute of Applied Physics, University of Tsukuba
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Ping Xue
Department of Physics and Key Laboratory of Atomic and Molecular Nanosciences, Tsinghua University, Beijing 100084, China
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Hajime Tanuma
Department of Physics, Tokyo Metropolitan University, Tokyo 192-0397, Japan
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Zhao Yiqing
Department of Physics and Key Laboratory of Atomic and Molecular Nanosciences, Tsinghua University, Beijing 100084, China
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Jianguo Wang
Institute of Applied Physics and Computational Mathematics, P. O. Box 8009, Beijing 100088, P. R. China
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Ratko Janev
Macedonian Academy of Sciences and Arts, P. O. Box 428, 1000 Skopje, Macedonia
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Yiqing Zhao
Department of Physics and Key Laboratory of Atomic and Molecular Nanosciences, Tsinghua University, Beijing 100084, China
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Ling Liu
Institute of Applied Physics and Computational Mathematics, P. O. Box 8009, Beijing 100088, P. R. China
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