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Electron impact total and ionization cross sections for Sr, Y, Ru, Pd, and Ag atoms

机译:Sr,Y,Ru,Pd和Ag原子的电子碰撞总截面和电离截面

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摘要

Calculation of electron impact total and ionization cross sections for Sr, Y, Ru, Pd, and Ag atoms were performed using spherical complex optical potential and complex scattering potential-ionization contribution methods. The complex optical potential model is formulated from the target parameters and the atomic charge density. The spherical charge densities are in turn derived from the Roothaan-Hartree-Fock wavefunctions defining the atomic orbital of the target. In the present study cross sections are computed in the energy range from ionization threshold to 2000 eV. The results obtained are compared with other theories and measurements wherever available and were found to be quite consistent and uniform. In general, present data show an overall reasonable agreement with other results. Dependence of total cross sections on the number of target electrons and peak of ionization cross section on target parameters were also found to be consistent with previous observations.
机译:Sr,Y,Ru,Pd和Ag原子的电子碰撞总数和电离截面的计算是使用球形复合光势和复合散射势电离贡献方法进行的。复杂的光势模型由目标参数和原子电荷密度构成。球形电荷密度又从定义目标原子轨道的Roothaan-Hartree-Fock波函数中得出。在本研究中,在从电离阈值到2000 eV的能量范围内计算截面。将获得的结果与其他可用的理论和测量结果进行比较,并发现它们是非常一致和一致的。一般而言,目前的数据与其他结果显示出总体合理的一致性。还发现总横截面对目标电子数量的依赖性以及电离横截面的峰对目标参数的依赖性与先前的观察一致。

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