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特定状态多参考耦合簇单双激发模型的解析梯度

Analytic gradients for the state-specific multireference coupled cluster singles and doubles model.

作者信息

Prochnow Eric, Evangelista Francesco A, Schaefer Henry F, Allen Wesley D, Gauss Jürgen

机构信息

Institut für Physikalische Chemie, Universität Mainz, D-55099 Mainz, Germany.

出版信息

J Chem Phys. 2009 Aug 14;131(6):064109. doi: 10.1063/1.3204017.

Abstract

The general theory of analytic energy gradients is presented for the state-specific multireference coupled cluster method introduced by Mukherjee and co-workers [Mol. Phys. 94, 157 (1998)], together with an implementation within the singles and doubles approximation, restricted to two closed-shell determinants and Hartree-Fock orbitals. Expressions for the energy gradient are derived based on a Lagrangian formalism and cast in a density-matrix notation suitable for implementation in standard quantum-chemical program packages. In the present implementation, we exploit a decomposition of the multireference coupled cluster gradient expressions, i.e., lambda equations and the corresponding density matrices, into a so-called single-reference part for each reference determinant and a coupling term. Our implementation exhibits the proper scaling, i.e., O(dN6) with d as the number of reference determinants and N as the number of orbitals, and it is thus suitable for large-scale applications. The applicability of our multireference coupled cluster gradients is illustrated by computations for the equilibrium geometry of the 2,6-isomers of pyridyne and the pyridynium cation. The results are compared to those from single-reference coupled cluster calculations and are discussed with respect to the future perspectives of multireference coupled cluster theory.

摘要

本文给出了Mukherjee及其同事[《分子物理》94, 157 (1998)]提出的态特定多参考耦合簇方法的解析能量梯度的一般理论,以及在单双激发近似下的实现,该实现限于两个闭壳层行列式和Hartree-Fock轨道。基于拉格朗日形式主义推导了能量梯度的表达式,并将其转换为适合在标准量子化学程序包中实现的密度矩阵表示法。在当前实现中,我们利用了多参考耦合簇梯度表达式(即λ方程和相应的密度矩阵)的分解,将其分解为每个参考行列式的所谓单参考部分和一个耦合项。我们的实现展现出了适当的标度,即对于d为参考行列式的数量、N为轨道数量时的O(dN6),因此它适用于大规模应用。通过对吡啶炔和吡啶鎓阳离子的2,6-异构体的平衡几何结构进行计算,说明了我们的多参考耦合簇梯度的适用性。将结果与单参考耦合簇计算的结果进行了比较,并就多参考耦合簇理论的未来前景进行了讨论。

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