Configuration interaction extension of AGP for incorporating inter-geminal correlations
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
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (3)
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,
Fei Gao
Gustavo E. Scuseria
Department of Chemistry, Rice University 1 , Houston, Texas 77005-1892,