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多参考态福克空间耦合簇理论与运动方程耦合簇理论:详细的相互联系

Multireference Fock-space coupled-cluster and equation-of-motion coupled-cluster theories: the detailed interconnections.

作者信息

Musial Monika, Bartlett Rodney J

机构信息

Institute of Chemistry, University of Silesia, Szkolna 9, 40-006 Katowice, Poland.

出版信息

J Chem Phys. 2008 Oct 7;129(13):134105. doi: 10.1063/1.2982788.

Abstract

The multireference Fock-space coupled-cluster (FS-CC) equations constructed via the effective Hamiltonian approach are reduced to those obtained through a partitioning technique for the matrix diagonalization. This allows finding a better route to solve the FS-CC equations for the (1,1) sector by the direct diagonalization of the properly constructed matrix, which is identical to that obtained with the intermediate Hamiltonian approach. The detailed connections with the equation-of-motion CC (EOM-CC) approach also provides alternative routes for studying the higher-sectors of Fock space, and for the treatment of properties other than the energy. The approach studied in this work is formulated at the CC singles, doubles (CCSD) and CC singles, doubles, triples (CCSDT) level. The performance of the method is illustrated by numerical examples for the C(2), C(2)H(4), and H(2)CO molecules in comparison with the EOM-CC method and available experimental data.

摘要

通过有效哈密顿量方法构建的多参考福克空间耦合簇(FS - CC)方程被简化为通过矩阵对角化的分区技术得到的方程。这使得能够找到一条更好的途径,通过对适当构建的矩阵进行直接对角化来求解(1,1)扇区的FS - CC方程,该矩阵与通过中间哈密顿量方法得到的矩阵相同。与运动方程耦合簇(EOM - CC)方法的详细联系还为研究福克空间的更高扇区以及处理能量以外的性质提供了替代途径。本文研究的方法是在耦合簇单双激发(CCSD)和耦合簇单双三激发(CCSDT)水平上制定的。通过对C(2)、C(2)H(4)和H(2)CO分子的数值示例,与EOM - CC方法和现有实验数据相比,说明了该方法的性能。

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