Issue 10, 2023

A configuration interaction correction on top of pair coupled cluster doubles

Abstract

Numerous numerical studies have shown that geminal-based methods are a promising direction to model strongly correlated systems with low computational costs. Several strategies have been introduced to capture the missing dynamical correlation effects, which typically exploit a posteriori corrections to account for correlation effects associated with broken-pair states or inter-geminal correlations. In this article, we scrutinize the accuracy of the pair coupled cluster doubles (pCCD) method extended by configuration interaction (CI) theory. Specifically, we benchmark various CI models, including, at most double excitations against selected CC corrections as well as conventional single-reference CC methods. A simple Davidson correction is also tested. The accuracy of the proposed pCCD-CI approaches is assessed for challenging small model systems such as the N2 and F2 dimers and various di- and triatomic actinide-containing compounds. In general, the proposed CI methods considerably improve spectroscopic constants compared to the conventional CCSD approach, provided a Davidson correction is included in the theoretical model. At the same time, their accuracy lies between those of the linearized frozen pCCD and frozen pCCD variants.

Graphical abstract: A configuration interaction correction on top of pair coupled cluster doubles

Supplementary files

Article information

Article type
Paper
Submitted
03 Nov 2022
Accepted
01 Feb 2023
First published
02 Feb 2023

Phys. Chem. Chem. Phys., 2023,25, 7289-7301

A configuration interaction correction on top of pair coupled cluster doubles

A. Nowak and K. Boguslawski, Phys. Chem. Chem. Phys., 2023, 25, 7289 DOI: 10.1039/D2CP05171K

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