Renormalization group approach to second-order Green’s function theory

J Joshua Krieger (Institute of Physical Chemistry, University of Münster 1 , Corrensstraße 28/30, 48149 Münster, ; , 48149 Münster, ; and , 48149 Münster,) J Johannes Tölle (Department of Chemistry, University of Hamburg and The Hamburg Centre for Ultrafast Imaging (CUI) 2 , 22761 Hamburg,)

Abstract

In this work, we introduce a new approach for constructing a renormalized and regularized Fock matrix for self-consistent field calculations. The scheme relies on second-order perturbation theory and is conceptually related to quasiparticle self-consistent second-order Green’s function theory (GF2). The regularization is derived within the framework of perturbative similarity renormalization group (SRG) theory. By optimizing both the regularization and spin-scaling parameters, we introduce three SRG-qsGF2 variants that enable accurate predictions of quasiparticle energies and dipole moments. Lastly, we demonstrate that formulating second-order perturbation theory for the total electronic energy using the renormalized SRG-qsGF2 Fock matrix as the unperturbed Hamiltonian mitigates divergence problems commonly observed in conventional Møller–Plesset perturbation theory.

Article Details

Volume / Issue Vol. 164, Issue 17
Published May 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 (2)

J

Joshua Krieger

Institute of Physical Chemistry, University of Münster 1 , Corrensstraße 28/30, 48149 Münster, ; , 48149 Münster, ; and , 48149 Münster,

J

Johannes Tölle

Department of Chemistry, University of Hamburg and The Hamburg Centre for Ultrafast Imaging (CUI) 2 , 22761 Hamburg,