School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff CF10 3AT, United Kingdom.
J Chem Phys. 2011 Jul 28;135(4):044113. doi: 10.1063/1.3615060.
We show that it is possible to construct an accurate approximation to the variational coupled cluster method, limited to double substitutions, from the minimization of a functional that is rigorously extensive, exact for isolated two-electron subsystems and invariant to transformations of the underlying orbital basis. This approximate variational coupled cluster theory is a modification and enhancement of our earlier linked pair functional theory. It is first motivated by the constraint that the inverse square root of the matrix that transforms the cluster amplitudes must exist. Low-order corrections are then included to enhance the accuracy of the approximation of variational coupled cluster, while ensuring that the computational complexity of the method never exceeds that of the standard traditional coupled cluster method. The effects of single excitations are included by energy minimization with respect to the orbitals defining the reference wavefunction. The resulting quantum chemical method is demonstrated to be a robust approach to the calculation of molecular electronic structure and performs well when static correlation effects are strong.
我们表明,通过严格扩展的泛函极小化,可以构建出一个准确的变分耦合簇方法的近似方法,该方法仅限于双取代。这个泛函对于孤立的双电子子系统是精确的,并且对基础轨道基变换不变。这个近似的变分耦合簇理论是我们早期的链接对泛函理论的改进和增强。它最初是由约束条件驱动的,即变换簇振幅的矩阵的平方根必须存在。然后,加入低阶修正项以提高变分耦合簇近似的准确性,同时确保方法的计算复杂度永远不会超过标准的传统耦合簇方法。通过相对于定义参考波函数的轨道进行能量最小化来包含单激发的影响。所得到的量子化学方法被证明是计算分子电子结构的一种稳健方法,并且在静态相关效应较强时表现良好。