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基于狄拉克-库仑-布赖特哈密顿量的精确二分量理论中的原子平均场方法。

Atomic Mean-Field Approach within Exact Two-Component Theory Based on the Dirac-Coulomb-Breit Hamiltonian.

作者信息

Zhang Chaoqun, Cheng Lan

机构信息

Department of Chemistry, The Johns Hopkins University, Baltimore, Maryland 21218, United States.

出版信息

J Phys Chem A. 2022 Jul 14;126(27):4537-4553. doi: 10.1021/acs.jpca.2c02181. Epub 2022 Jun 28.

Abstract

An extension of the exact two-component theory with atomic mean-field integrals (the X2CAMF scheme) to the treatment of the Breit term together with efficient implementation using an atomic Dirac-Coulomb-Breit Hartree-Fock program is reported. The accuracy of the X2CAMF scheme for treating the contributions from the Breit term to the molecular properties is demonstrated using benchmark calculations of equilibrium bond lengths, harmonic frequencies, and dipole moments for molecules containing elements across the periodic table. Calculations of the properties for molecules containing period four elements aiming at high accuracy as well as for Th- and U-containing molecules are also presented and compared with experimental results to demonstrate the usefulness of the X2CAMF scheme in combination with accurate treatments of electron correlation by the coupled-cluster (CC) methods. The combination of CC methods and the X2CAMF scheme shows potential to extend the accuracy of CC calculations to heavy elements, e.g., to computational heavy-element thermochemistry.

摘要

报道了一种将具有原子平均场积分的精确双分量理论(X2CAMF 方案)扩展到 Breit 项处理,并使用原子狄拉克-库仑- Breit 哈特里-福克程序进行有效实现的方法。通过对周期表中各元素分子的平衡键长、谐频和偶极矩进行基准计算,证明了 X2CAMF 方案处理 Breit 项对分子性质贡献的准确性。还给出了针对含第四周期元素分子以及含钍和铀分子的高精度性质计算,并与实验结果进行比较,以证明 X2CAMF 方案与耦合簇(CC)方法精确处理电子相关相结合的实用性。CC 方法与 X2CAMF 方案的结合显示出将 CC 计算精度扩展到重元素的潜力,例如扩展到计算重元素热化学领域。

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