Gulania Sahil, Kjønstad Eirik F, Stanton John F, Koch Henrik, Krylov Anna I
Department of Chemistry, University of Southern California, Los Angeles, California 90089, USA.
Department of Chemistry, Norwegian University of Science and Technology, 7491 Trondheim, Norway.
J Chem Phys. 2021 Mar 21;154(11):114115. doi: 10.1063/5.0041822.
We report a production-level implementation of the equation-of-motion (EOM) coupled-cluster (CC) method with double electron-attaching (DEA) EOM operators of 2p and 3p1h types, EOM-DEA-CCSD. This ansatz, suitable for treating electronic structure patterns that can be described as two-electrons-in-many orbitals, represents a useful addition to the EOM-CC family of methods. We analyze the performance of EOM-DEA-CCSD for energy differences and molecular properties. By considering reduced quantities, such as state and transition one-particle density matrices, we compare EOM-DEA-CCSD wave functions with wave functions computed by other EOM-CCSD methods. The benchmarks illustrate that EOM-DEA-CCSD is capable of treating diradicals, bond-breaking, and some types of conical intersections.
我们报告了运动方程(EOM)耦合簇(CC)方法的生产级实现,该方法带有2p和3p1h类型的双电子附着(DEA)EOM算符,即EOM-DEA-CCSD。这种近似方法适用于处理可描述为多轨道中双电子的电子结构模式,是EOM-CC方法家族的一个有用补充。我们分析了EOM-DEA-CCSD在能量差和分子性质方面的性能。通过考虑简化量,如态和跃迁单粒子密度矩阵,我们将EOM-DEA-CCSD波函数与其他EOM-CCSD方法计算的波函数进行比较。基准测试表明,EOM-DEA-CCSD能够处理双自由基、键断裂和某些类型的锥形交叉。