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Application of relativistic distorted-wave method to electron-impact excitation of highly charged Fe XXIV ion embedded in weakly coupled plasmas

机译:相对论扭曲波法在弱耦合等离子体中嵌入高电荷的Fe XXIV离子的电子冲击激发

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The process of excitation of highly charged Fe XXIV ion embedded in weakly coupled plasmas by electron impact is studied, together with the subsequent radiative decay. For the target structure, the calculation is performed using the multiconfiguration Dirac-Hartree-Fock method incorporating the Debye-Huckel potential for the electron-nucleus interaction. Fine-structure levels of the 1s(2)2p and 1s2s2p configurations and the transition properties among these levels are presented over a wide range of screening parameters. For the collision dynamics, the distorted-wave method in the relativistic frame is adopted to include the effect of plasma background, in which the interparticle interactions in the system are described by screened interactions of the Debye-Huckel type. The continuum wave function of the projectile electron is obtained by solving the modified Dirac equations. The influence of plasma strength on the cross section, the linear polarization, and the angular distribution of x-ray photon emission are investigated in detail. Comparison of the present results with experimental data and other theoretical predictions, when available, is made. Published by AIP Publishing.
机译:通过电子冲击研究了通过电子冲击嵌入弱耦合等离子体中的高电荷的Fe XXIV离子的激发过程。随后的辐射衰减。对于目标结构,使用包含掺入电子核相互作用的DEYE-Huckel电位的多组配置DIGAC-HARTREE-FOCH方法来执行计算。在各种筛选参数上呈现了1S(2)2P和1S2S2P配置的细结构水平和这些级别之间的转变特性。对于碰撞动力学,采用相对论帧中的扭转波方法包括等离子体背景的效果,其中通过脱嘶嘶的次壳类型的筛选相互作用来描述系统中的颗粒间相互作用。通过求解改进的DIRAC方程,获得射弹电子的连续波函数。详细研究了等离子体强度对横截面,线性极化和X射线光子发射的角度分布的影响。当前结果与实验数据和其他理论预测的比较是可用的。通过AIP发布发布。

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