Kowalski Karol
Physical Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99354, USA.
J Chem Phys. 2023 Feb 7;158(5):054101. doi: 10.1063/5.0125696.
In this article, we provide numerical evidence indicating that the single-reference coupled-cluster (CC) energies can be calculated alternatively to their copybook definition. We demonstrate that the CC energy can be reconstructed by diagonalizing the effective Hamiltonians describing correlated sub-systems of the many-body system. In the extreme case, we provide numerical evidence that the CC energy can be reproduced through the diagonalization of the effective Hamiltonian describing sub-system composed of a single electron. These properties of the CC formalism can be exploited to design protocols to define effective interactions in sub-systems used as probes to calculate the energy of the entire system and introduce a new type of self-consistency for approximate CC approaches.
在本文中,我们提供了数值证据,表明单参考耦合簇(CC)能量可以通过与其常规定义不同的方式来计算。我们证明,通过对描述多体系统相关子系统的有效哈密顿量进行对角化,可以重建CC能量。在极端情况下,我们提供了数值证据,表明可以通过对描述由单个电子组成的子系统的有效哈密顿量进行对角化来重现CC能量。CC形式体系的这些性质可用于设计协议,以定义用作计算整个系统能量的探针的子系统中的有效相互作用,并为近似CC方法引入一种新型的自洽性。