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利用狄拉克-库仑-布赖特参数化有效自旋轨道耦合改进单电子精确二分量相对论方法。

Improving One-Electron Exact-Two-Component Relativistic Methods with the Dirac-Coulomb-Breit-Parameterized Effective Spin-Orbit Coupling.

作者信息

Ehrman Jordan, Martinez-Baez Ernesto, Jenkins Andrew J, Li Xiaosong

机构信息

Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.

出版信息

J Chem Theory Comput. 2023 Sep 12;19(17):5785-5790. doi: 10.1021/acs.jctc.3c00479. Epub 2023 Aug 17.

Abstract

In photochemical processes, spin-orbit coupling plays a crucial role in determining the outcome of the reaction. However, the exact treatment of the Dirac-Coulomb-Breit two-electron operator required for rigorous inclusion of spin-orbit coupling is computationally prohibitive. To address this challenge, we present a Dirac-Coulomb-Breit-parameterized screened-nuclear spin-orbit factor to approximate two-electron spin-orbit couplings in the effective one-electron spin-orbit Hamiltonian. We propose two schemes, the universal and row-dependent parameterizations, to further improve the accuracy of the method. Benchmark calculations on both atomic and molecular systems are performed and compared to results from the computationally expensive four-component Dirac-Coulomb-Breit method. The Dirac-Coulomb-Breit-parameterized approach offers a more computationally feasible method for accurate spin-orbit coupling calculations.

摘要

在光化学过程中,自旋-轨道耦合在决定反应结果方面起着至关重要的作用。然而,要严格纳入自旋-轨道耦合所需的狄拉克-库仑-布赖特双电子算符的精确处理在计算上是难以实现的。为应对这一挑战,我们提出了一种狄拉克-库仑-布赖特参数化的屏蔽核自旋-轨道因子,以在有效单电子自旋-轨道哈密顿量中近似双电子自旋-轨道耦合。我们提出了两种方案,即通用参数化和行相关参数化,以进一步提高该方法的准确性。对原子和分子系统都进行了基准计算,并与计算成本高昂的四分量狄拉克-库仑-布赖特方法的结果进行了比较。狄拉克-库仑-布赖特参数化方法为精确的自旋-轨道耦合计算提供了一种计算上更可行的方法。

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