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Theoretical Analysis on Fully Differential Cross-Sections for C^6+ Single Ionization of Helium

Theoretical Analysis on Fully Differential Cross-Sections for C^6+ Single Ionization of Helium
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摘要 The four-body model has been used to calculate the fully differential cross-sections (FDCS) for the single ionization of helium by 100 MeV/amu Ca^+ impact in geometries. By comparing with experimental data and other theories, we find the results of four-body model are in very good agreement in the scattering plane, but poor agreement out of the scattering plane. Accordingly, the contributions of different scattering amplitudes to FDCS are analyzed. It is found that the cross sections due to the interference of the scattering amplitudes between projectile-target nucleus interaction and projectile-ejected electron interaction almost tend to experimental results around the recoil region in geometries. In particular in the perpendicular plane, the cross section originating from interference of the scattering amplitudes between projectile-target nucleus and projectile-ejected electron interactions yields an experimental double-peak structure in the angular distribution. However, this feature could not be presented by the interference of the three amplitudes. Thus, the failure of the fourbody model predicting the feature in this geometry may be attributed to an inappropriate weighting of the three amplitudes.
出处 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2014年第3期279-284,共6页 化学物理学报(英文)
基金 ACKNOWLEDGMENTS This work was supported by the National Natural Science Foundation of China (No.11274215), the Natural Science Foundation of Shanxi Province, China (No.20051008 and No.2010011009), and the Technology Project of Shanxi Provincial Education Department, China (No.20111011).
关键词 Ion-impact ionization Fully differential cross section Four-body model Interference effect 电离理论 全差分 电子相互作用 散射振幅 实验数据 几何形状 体模型
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