Zhao Zijun, Evangelista Francesco A
Department of Chemistry and Cherry Emerson Center for Scientific Computation, Emory University, Atlanta, Georgia 30322, United States.
J Phys Chem Lett. 2024 Jul 18;15(28):7103-7110. doi: 10.1021/acs.jpclett.4c01372. Epub 2024 Jul 2.
Most nonrelativistic electron correlation methods can be adapted to account for relativistic effects, as long as the relativistic molecular spinor integrals are available, from either a four-, two-, or one-component mean-field calculation. However, relativistic multireference correlation methods remain a relatively unexplored area, with mixed evidence regarding the improvements brought by perturbative treatments. We report, for the first time, the implementation of state-averaged four-component relativistic multireference perturbation theories to second and third order based on the driven similarity renormalization group (DSRG). With our methods, named 4c-SA-DSRG-MRPT2 and 3, we find that the dynamical correlation included on top of 4c-CASSCF references can significantly improve the spin-orbit splittings in p-block elements and potential energy surfaces when compared to 4c-CASSCF and 4c-CASPT2 results. We further show that 4c-DSRG-MRPT2 and 3 are applicable to these systems over a wide range of the flow parameter, with systematic improvement from second to third order in terms of both improved error statistics and reduced sensitivity with respect to the flow parameter.
只要相对论性分子旋量积分可从四分量、二分量或单分量平均场计算中获得,大多数非相对论性电子相关方法都可以进行调整以考虑相对论效应。然而,相对论性多参考相关方法仍然是一个相对未被探索的领域,关于微扰处理带来的改进存在混合证据。我们首次报告了基于驱动相似重整化群(DSRG)实现到二阶和三阶的态平均四分量相对论性多参考微扰理论。使用我们命名为4c-SA-DSRG-MRPT2和3的方法,我们发现与4c-CASSCF和4c-CASPT2结果相比,在4c-CASSCF参考之上包含的动态相关可以显著改善p区元素的自旋轨道分裂和势能面。我们进一步表明,4c-DSRG-MRPT2和3在广泛的流动参数范围内适用于这些系统,从二阶到三阶有系统的改进,在改进的误差统计和对流动参数的敏感性降低方面均有体现。