Configuration interaction extension of AGP for incorporating inter-geminal correlations

A Airi Kawasaki (Division of Electronics and Mechanical Engineering, Graduate School of Science and Technology, Gunma University 1 , 1-5-1 Tenjin-cho, Kiryu-shi, Gunma 376-8515,) F Fei Gao G Gustavo E. Scuseria (Department of Chemistry, Rice University 1 , Houston, Texas 77005-1892,)

Abstract

In this paper, we develop a class of antisymmetrized geminal power configuration interaction (AGP-CI) wave functions that extend the AGP framework by incorporating inter-geminal correlations through a CI expansion. To make these wavefunctions computationally tractable, we evaluate them by rewriting the AGP-CI ansatz as a linear combination of AGPs (LC-AGP), for which overlaps and Hamiltonian matrix elements can be computed with standard AGP machinery. Motivated by border-rank decompositions, we further reorganize this ansatz into a compact linear combination of AGPs depending on a small deformation parameter τ, which controls how closely the truncated expansion approximates the full AGP-CI state. Benchmark applications to the Hubbard model and to the small molecules H2O and N2 demonstrate that the proposed wavefunctions achieve consistently high accuracy and outperform the LC-AGP, particularly for systems with more electrons and in strongly correlated regimes.

Article Details

Volume / Issue Vol. 164, Issue 23
Published June 21, 2026
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (3)

A

Airi Kawasaki

Division of Electronics and Mechanical Engineering, Graduate School of Science and Technology, Gunma University 1 , 1-5-1 Tenjin-cho, Kiryu-shi, Gunma 376-8515,

F

Fei Gao

G

Gustavo E. Scuseria

Department of Chemistry, Rice University 1 , Houston, Texas 77005-1892,