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High Precision Three-body Variational Method for Critical Nuclear Charge

机译:临界核电荷的高精度三体变分方法

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摘要

For an atom there exists a critical nuclear charge Z c that is just sufficient to bind the nucleus and its electrons into a stable configuration. A study of the critical charge for two-electron atoms is presented with the purpose of improving accuracy for Z c . To this end, high precision techniques involving the variational method with multiple basis sets in Hylleraas coordinates are employed. The method is particularly well adapted to the case where one electron is strongly bound and the other is at the limit of becoming unbound. The results are analysed in terms of fractional powers of ( Z - Z c ) related to the analytic structure of the energy E ( Z ) and a 1/ Z expansion for the energy. This results in a Z c of 0.91102808(5). Future work prompted by this study includes development of direct techniques to determine Z c utilizing the low-Z stability of the method; developing the framework and mathematical justification for a novel bootstrap analysis method used in curve-fitting; and investigating the inclusion of finite nuclear mass, relativistic effects, and other higher order corrections in the determination of Z c .
机译:对于一个原子,存在一个临界核电荷Z c,足以将原子核及其电子结合成稳定的构型。为了提高Z c的精确度,对二电子原子的临界电荷进行了研究。为此,采用了涉及在Hylleraas坐标中具有多个基集的变分方法的高精度技术。该方法特别适合于一个电子被牢固地结合而另一个电子处于未结合的极限的情况。根据与能量E(Z)的解析结构和能量的1 / Z扩展相关的(Z-Z c)的分数功率来分析结果。这导致Z c为0.91102808(5)。这项研究推动的未来工作包括开发直接方法,以利用该方法的低Z稳定性来确定Z c。开发用于曲线拟合的新型自举分析方法的框架和数学依据;并研究了在确定Z c时包括有限核质量,相对论效应和其他高阶校正的问题。

著录项

  • 作者

    Busuttil Michael A.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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