William R. Wiley Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, K8-91 Battelle, P.O. Box 999, Richland, Washington 99352, USA.
J Chem Phys. 2009 Dec 21;131(23):234107. doi: 10.1063/1.3270957.
The recently introduced energy expansion based on the use of generating functional (GF) [K. Kowalski and P. D. Fan, J. Chem. Phys. 130, 084112 (2009)] provides a way of constructing size-consistent noniterative coupled cluster (CC) corrections in terms of moments of the CC equations. To take advantage of this expansion in a strongly interacting regime, the regularization of the cluster amplitudes is required in order to counteract the effect of excessive growth of the norm of the CC wave function. Although proven to be efficient, the previously discussed form of the regularization does not lead to rigorously size-consistent corrections. In this paper we address the issue of size-consistent regularization of the GF expansion by redefining the equations for the cluster amplitudes. The performance and basic features of proposed methodology are illustrated on several gas-phase benchmark systems. Moreover, the regularized GF approaches are combined with quantum mechanical molecular mechanics module and applied to describe the S(N)2 reaction of CHCl(3) and OH(-) in aqueous solution.
最近引入的基于生成泛函(GF)[K. Kowalski 和 P. D. Fan,J. Chem. Phys. 130, 084112 (2009)]的能量展开方法提供了一种以 CC 方程的矩为基础构建大小一致的非迭代耦合簇(CC)校正的方法。为了在强相互作用的情况下利用这种展开,需要对簇振幅进行正则化,以抵消 CC 波函数范数过度增长的影响。尽管已被证明是有效的,但之前讨论的正则化形式并不能导致严格大小一致的校正。在本文中,我们通过重新定义簇振幅方程来解决 GF 展开的大小一致正则化问题。所提出方法的性能和基本特征在几个气相基准系统上进行了说明。此外,正则化 GF 方法与量子力学分子力学模块相结合,并应用于描述 CHCl(3)和 OH(-)在水溶液中的 S(N)2 反应。