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Theoretical study of inner-shell electron-impact excitation of highly charged ions: Alignment and angular distribution of electron emission

机译:高电荷离子内壳电子冲击激发的理论研究:电子发射的对准和角度分布

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The influence of the Breit interaction, typically appears as a relativistic correction to the Coulomb repulsion acting among the electrons, on the alignment (i.e. the population of the magnetic sublevels) and the angular distribution of electron emission from the excited state have been investigated systematically. Detailed calculations have been carried out for the electron-impact excitation cross sections from the ground state to the individual magnetic sublevels of highly charged beryllium-like ions by using a fully relativistic distorted-wave (RDW) method. A remarkable change in the alignment and the electron angular distribution due to the Breit interaction is found, especially for the cases with high-energetic incident electron and high-Z target ions.
机译:Break相互作用的影响通常看起来是对电子之间作用的库仑排斥的相对论校正,在对准(即磁悬浮的群体)和来自激发态的电子发射的角度分布已经进行了系统地研究。通过使用完全相同的扭转波(RDW)方法,对从地态的电子冲击激发横截面与高电荷的铍样离子的单个磁性偏振来进行详细计算。发现对对准和电子角度分布的显着变化,特别是对于具有高能入射电子和高Z靶离子的情况。

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