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闭壳层耦合簇方法对布赖特-泡利一阶相对论能量修正的处理

A closed-shell coupled-cluster treatment of the Breit-Pauli first-order relativistic energy correction.

作者信息

Coriani Sonia, Helgaker Trygve, Jørgensen Poul, Klopper Wim

机构信息

Dipartimento di Scienze Chimiche, Università degli Studi di Trieste, Via Licio Giorgieri 1, I-34127 Trieste, Italy.

出版信息

J Chem Phys. 2004 Oct 8;121(14):6591-8. doi: 10.1063/1.1788634.

Abstract

First-order relativistic corrections to the energy of closed-shell molecular systems are calculated, using all terms in the two-component Breit-Pauli Hamiltonian. In particular, we present the first implementation of the two-electron Breit orbit-orbit integrals, thus completing the first-order relativistic corrections within the two-component Pauli approximation. Calculations of these corrections are presented for a series of small and light molecules, at the Hartree-Fock and coupled-cluster levels of theory. Comparisons with four-component Dirac-Coulomb-Breit calculations demonstrate that the full Breit-Pauli energy corrections represent an accurate approximation to a fully relativistic treatment of such systems. The Breit interaction is dominated by the spin-spin interaction, the orbit-orbit interaction contributing only about 10% to the total two-electron relativistic correction in molecules consisting of light atoms. However, the relative importance of the orbit-orbit interaction increases with increasing nuclear charge, contributing more than 20% in H(2)S.

摘要

利用双分量布赖特 - 泡利哈密顿量中的所有项,计算了闭壳层分子体系能量的一级相对论修正。特别地,我们首次实现了双电子布赖特轨道 - 轨道积分,从而在双分量泡利近似下完成了一级相对论修正。在哈特里 - 福克和耦合簇理论水平上,给出了一系列小分子和轻分子的这些修正的计算结果。与四分量狄拉克 - 库仑 - 布赖特计算结果的比较表明,完整的布赖特 - 泡利能量修正对此类体系的全相对论处理是一种精确的近似。布赖特相互作用主要由自旋 - 自旋相互作用主导,在由轻原子组成的分子中,轨道 - 轨道相互作用仅对总双电子相对论修正贡献约10%。然而,轨道 - 轨道相互作用的相对重要性随着核电荷的增加而增加,在H₂S中贡献超过20%。

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