Slipchenko Lyudmila V, Krylov Anna I
Department of Chemistry, University of Southern California, Los Angeles, California 90089-0482, USA.
J Chem Phys. 2005 Aug 22;123(8):084107. doi: 10.1063/1.2006091.
We report the implementation of the spin-conserving and spin-flipping variants of the equation-of-motion (EOM) coupled-cluster (CC) model, which includes single and double excitations in the CC part and single, double, and triple excitations in the EOM part, i.e., EOM-CC(2,3) [Hirata, Nooijen, Bartlett, Chem. Phys. Lett. 326, 255 (2000)] for closed- and open-shell references. Inclusion of triples significantly improves the accuracy of EOM-CCSD for excitation energies (EOM-EE-CCSD) and its spin-flip (SF) counterpart, EOM-SF-CCSD, especially when the reference wave function is strongly spin-contaminated. A less computationally demanding active space variant with semi-internal triples has also been implemented. The capabilities of full and active space EOM-CC(2,3) are demonstrated by applications to CO(+) and CH radicals as well as to the methylene and trimethylenemethane diradicals and the dehydro-m-xylylene triradical.
我们报告了运动方程(EOM)耦合簇(CC)模型的自旋守恒和自旋翻转变体的实现,该模型在CC部分包括单激发和双激发,在EOM部分包括单激发、双激发和三激发,即用于闭壳层和开壳层参考的EOM - CC(2,3) [平田、努伊延、巴特利特,《化学物理快报》326, 255 (2000)]。包含三激发显著提高了用于激发能的EOM - CCSD(EOM - EE - CCSD)及其自旋翻转(SF)对应物EOM - SF - CCSD的精度,特别是当参考波函数存在强烈自旋污染时。还实现了一种计算需求较低的具有半内禀三激发的活性空间变体。通过应用于CO(+)和CH自由基以及亚甲基和三亚甲基甲烷双自由基和脱氢间二甲苯三自由基,展示了全活性空间和活性空间EOM - CC(2,3)的能力。