Zhang Chaoqun, Zheng Xuechen, Liu Junzi, Asthana Ayush, Cheng Lan
Department of Chemistry, The Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Chem Phys. 2023 Dec 28;159(24). doi: 10.1063/5.0175041.
A first implementation of analytic gradients for spinor-based relativistic equation-of-motion coupled-cluster singles and doubles method using an exact two-component Hamiltonian augmented with atomic mean-field spin-orbit integrals is reported. To demonstrate its applicability, we present calculations of equilibrium structures and harmonic vibrational frequencies for the electronic ground and excited states of the radium mono-amide molecule (RaNH2) and the radium mono-methoxide molecule (RaOCH3). Spin-orbit coupling is shown to quench Jahn-Teller effects in the first excited state of RaOCH3, resulting in a C3v equilibrium structure. The calculations also show that the radium atoms in these molecules serve as efficient optical cycling centers.
报道了基于旋量的相对论运动方程耦合簇单双激发方法的解析梯度的首次实现,该方法使用了精确的二分量哈密顿量,并增加了原子平均场自旋轨道积分。为了证明其适用性,我们给出了镭单酰胺分子(RaNH2)和镭单甲醇盐分子(RaOCH3)的电子基态和激发态的平衡结构和谐波振动频率的计算结果。结果表明,自旋轨道耦合消除了RaOCH3第一激发态的 Jahn-Teller 效应,从而形成了 C3v 平衡结构。计算还表明,这些分子中的镭原子可作为有效的光学循环中心。