Seniority eigenstate configuration interaction

T Thomas M. Henderson (Department of Chemistry, Rice University 1 , Houston, Texas 77005-1892,) G Guo P. Chen (Department of Chemistry, Rice University 1 , Houston, Texas 77005-1892,) G Gustavo E. Scuseria (Department of Chemistry, Rice University 1 , Houston, Texas 77005-1892,)

Abstract

Zero-seniority methods have shown great promise for the description of strongly correlated electronic systems. Other seniority sectors have been much less explored, and in particular, the maximal seniority sector and zero seniority have the same underlying algebraic structure. We introduce a seniority eigenstate configuration interaction in which the wave function is constrained to have good fixed local seniority for each paired orbital, by which we mean we partition orbitals into a pairing set with seniority zero, and a spin set with seniority one. We show how to build the effective Hamiltonian for this ansatz, and demonstrate that high-seniority wave functions have unexpectedly excellent accuracy for strongly correlated fermionic systems, with accuracy competitive with or better than seniority zero for the Hubbard model and for the dissociation of the nitrogen molecule.

Article Details

Volume / Issue Vol. 165, Issue 1
Published July 07, 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)

T

Thomas M. Henderson

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

G

Guo P. Chen

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

G

Gustavo E. Scuseria

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