Calculations of Energy Levels of the Singly Excited States (1snl) 1,3Lp for Heliumlike Ions with Z ≤ 12

M. T. Gning
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引用次数: 0

Abstract

In this paper we present accurate calculated data of the energy levels of the 1snl1,3Lp states (l = s, p, d; n = 2 – 10) of helium and heliumlike ions up to Z = 12 using the variational approach of the Screening Constant by Unit Nuclear Charge (SCUNC) formalism. These calculations are performed by solving the time-independent Schrödinger equation using a new explicitly correlated wave function. A thorough comparison with theoretical predictions available in the literature for the energy levels of the singly excited 1sns1,3Se, 1snp1,3P0and 1snd1,3De Rydberg series is performed. Most of the tabulated results are generally in good agreement with the available reference data, confirming the reliability of our results. SCUNC predictions up to n = 10 may provide reliable atomic data for related experiments in the future.
Z≤12的类氦离子单激发态(1snl) 1,3lp能级的计算
本文给出了1snl1,3Lp态(l = s, p, d;利用单位核电荷筛选常数(SCUNC)的变分方法,对Z = 12以内的氦离子和类氦离子进行了研究。这些计算是通过使用新的显式相关波函数求解与时间无关的Schrödinger方程来完成的。对单激发1sns1,3Se, 1snp1, 3p0和1snd1,3De Rydberg系列的能级与文献中已有的理论预测进行了彻底的比较。大多数表格的结果与现有的参考数据基本一致,证实了我们的结果的可靠性。最高n = 10的SCUNC预测可为今后的相关实验提供可靠的原子数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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