论文标题

Skyrme型核互动是计算有限的核大小校正到原子能水平和边界电子$ g $因子的工具

Skyrme-type nuclear interaction as a tool for calculating the finite nuclear size correction to atomic energy levels and the bound-electron $g$ factor

论文作者

Valuev, Igor A., Harman, Zoltán, Keitel, Christoph H., Oreshkina, Natalia S.

论文摘要

针对一系列高电荷的氢样离子,引入并证明了一种计算有限的核大小校正和边界电子$ G $因子的最先进方法。首先,采用基于Skyrme型核相互作用的自洽均值计算是为了产生逼真的核质子分布。在第二步中,获得的核电荷密度用于构建扩展核的电势,并通过数值求解Dirac方程。 Skyrme参数化选择中的歧义仅通过仅对Skyrme力的一个参数进行微调来抑制,以便在每种特定情况下准确地重现核半径的实验值。同质带电的球体近似,两参数费米分布和实验核电电荷分布用于与我们的方法进行比较,并且估计了所述计算的不确定性。此外,证明了$ g $因子的特定差异的有限核大小效应。

A state-of-the-art approach for calculating the finite nuclear size correction to atomic energy levels and the bound-electron $g$ factor is introduced and demonstrated for a series of highly charged hydrogen-like ions. Firstly, self-consistent mean-field calculations based on the Skyrme-type nuclear interaction are employed in order to produce a realistic nuclear proton distribution. In the second step, the obtained nuclear charge density is used to construct the potential of an extended nucleus, and the Dirac equation is solved numerically. The ambiguity in the choice of a Skyrme parametrization is supressed by fine-tuning of only one parameter of the Skyrme force in order to accurately reproduce the experimental values of nuclear radii in each particular case. The homogeneously charged sphere approximation, the two-parameter Fermi distribution and experimental nuclear charge distributions are used for comparison with our approach, and the uncertainties of the presented calculations are estimated. In addition, suppression of the finite nuclear size effect for the specific differences of $g$ factors is demonstrated.

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