首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Spin-dependent localized Hartree-Fock density-functional calculation of singly, doubly, and triply excited and Rydberg states of He- and Li-like ions
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Spin-dependent localized Hartree-Fock density-functional calculation of singly, doubly, and triply excited and Rydberg states of He- and Li-like ions

机译:He,Li离子的单,双和三重激发态和Rydberg态的自旋相关局部Hartree-Fock密度函数计算

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摘要

A spin-dependent density-functional approach for the calculation of highly and multiply excited state of atomic system is proposed based on the localized Hartree-Fock density-functional method and Slater's diagonal sum rule. In this approach, electron spin orbitals in an electronic configuration are obtained first by solving the Kohn-Sham equation with an exact nonvariational spin-dependent localized Hartree-Fock exchange potential. Then a single-Slater-determinant energy of the electronic configuration is calculated by using these electron spin orbitals. Finally, a multiplet energy of an excited state is evaluated from the single-Slater-determinant energies of the electronic configurations involved in terms of Slater's diagonal sum rule. This approach has been applied to the calculation of singly, doubly, and especially triply excited Rydberg states of He- and Li-like ions. The total energies obtained from the calculation with an exchange-only (X-only) potential are surprisingly close to those of Hartree-Fock method and the total energies from the calculation with exchange-correlation potential are in overall agreement with available theoretical and experimental data. The presented procedure provides a simple and computationally efficient scheme for the accurate calculation of highly and multiply excited Rydberg states of an atomic system within density-functional theory.
机译:基于局部Hartree-Fock密度泛函方法和Slater对角和规则,提出了一种自旋相关的密度泛函方法,用于计算原子系统的高倍和多激发态。在这种方法中,首先通过求解具有精确的不变量自旋相关的局部Hartree-Fock交换势的Kohn-Sham方程,获得电子结构中的电子自旋轨道。然后,通过使用这些电子自旋轨道来计算电子构型的单斯拉特行列式能量。最后,根据涉及斯拉特对角和规则的电子结构的单斯拉特行列式能量来评估激发态的多重能。该方法已应用于计算He,Li离子的单,双,尤其是三重激发Rydberg态。具有仅交换(仅X)电势的计算所获得的总能量令人惊讶地接近Hartree-Fock方法,并且具有交换相关电势的计算所获得的总能量与可用的理论和实验数据总体上一致。所提出的过程提供了一种简单且计算效率高的方案,用于在密度泛函理论范围内精确计算原子系统的高度激发态和多重激发态的里德堡态。

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