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首页> 外文期刊>The Journal of Chemical Physics >Refinement of the experimental energy levels of higher 2D Rydberg states of the lithium atom with very accurate quantum mechanical calculations
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Refinement of the experimental energy levels of higher 2D Rydberg states of the lithium atom with very accurate quantum mechanical calculations

机译:用非常精确的量子力学计算细化锂原子的更高2D Rydberg态的实验能级

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Very accurate variational non-relativistic calculations are performed for four higher Rydberg ~2D states (1s~2nd~1, n 8, 11) of the lithium atom (7Li). The wave functions of the states are expanded in terms of all-electron explicitly correlated Gaussian functions and finite nuclear mass is used. The exponential parameters of the Gaussians are optimized using the variational method with the aid of the analytical energy gradient determined with respect to those parameters. The results of the calculations allow for refining the experimental energy levels determined with respect to the ~2S 1s~22s~1 ground state.
机译:对于锂原子(7Li)的四个更高的Rydberg〜2D状态(1s〜2nd〜1,n 8,11),执行了非常准确的变分非相对论计算。根据全电子显式相关的高斯函数扩展了状态的波函数,并使用了有限的核质量。高斯指数函数的参数使用变分法,借助相对于这些参数确定的分析能梯度进行优化。计算结果允许完善相对于〜2S 1s〜22s〜1基态确定的实验能级。

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