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首页> 外文期刊>The Journal of Chemical Physics >Effects of core space and excitation levels on ground-state correlation and photoionization dynamics of Be and Ne
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Effects of core space and excitation levels on ground-state correlation and photoionization dynamics of Be and Ne

机译:核心空间和激发水平对Be和Ne的地面相关性和摄影动力学的影响

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摘要

We explore the effects of correlation on the ground-state energies and on photoionization dynamics in atomic Be and Ne. We apply the time-dependent restricted-active-space self-consistent-field method for several excitation schemes and active orbital spaces with and without a dynamic core to address the effects systematically at different levels of approximation. For the ground-state many-electron wave functions, we compare the correlation energies with entropic measures of entanglement. A larger magnitude of the correlation energy does not always correspond to a larger value of the considered entanglement measures. To evaluate the impact of correlation in a process involving continua, we consider photoionization by attosecond pulses. The photoelectron spectra may be significantly affected by including a dynamical core. Published under license by AIP Publishing.
机译:我们探讨了与地面能量相关的相关性以及原子和NE中的光离心动力学。 我们应用了多个激励方案和有源轨道空间的时间依赖的限制 - 有效空间自我一致 - 现场方法,而没有动态核心,以在不同近似水平上系统地解决效果。 对于地面态多电子波函数,我们将相关性与熵熵衡量进行比较。 相关能量的更大幅度并不总是对应于所考虑的纠缠措施的更大值。 为了评估相关过程中的相关性,我们考虑由Attosecond脉冲的摄影化。 光电子光谱可以通过包括动力核心的显着影响。 通过AIP发布在许可证下发布。

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