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Application of the Screened Hydrogenic Model to Light Atoms

机译:筛选的氢模型在光原子中的应用

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The purpose of this work was to develop a Screened Hydrogenic Model (SHM) to accurately calculate the electron energies for light atoms and ions with up to ten electrons for atomic numbers up to 18. The total energy of an atom or ion was calculated with effective nuclear charges and screening parameters for each electron type (1s, 2s and 2p) within a specific electron configuration. Multiple energy states, centered at the total energy, were calculated for electron configurations that have Russell-Saunders coupling. The energy of each electron included its relativistic energy, E _( REL ), but close overall agreement between the calculated and experimental energies of multi-electron configurations required that the one-electron expression for E _( REL ) be modified in a simple manner. In the present work, 98% of the 587 calculated energies for light atoms/ions have a relative error within ±0.1% of the corresponding experimental energies. The effective nuclear charges described in this work allow hydrogen-like wave functions to be defined for the electrons within a multi-electron configuration. The SHM, described in this work, is available for future calculations involving light atoms and ions.
机译:这项工作的目的是开发一种筛选的氢模型(SHM),以精确计算光原子和离子的电子能量,最多有10个电子数字用于原子序数。原子或离子的总能量用有效计算在特定电子构造内的每个电子类型(1S,2S和2P)的核电荷和筛选参数。为具有russell-saunders联轴器的电子配置来计算以总能量为中心的多种能量状态。每个电子的能量包括其相对论的能量,E _(rel),但是在多电子配置的计算和实验能量之间的整体协议需要以简单的方式修改E _(rel)的单电子表达式。在本作工作中,587个光原子/离子的587个计算能量的98%在相应实验能量的±0.1%内具有相对误差。本工作中描述的有效核电允许为多电子配置内的电子定义氢状波函数。在这项工作中描述的SHM可用于将来计算涉及光原子和离子的计算。

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