Accelerating correlated wave function calculations with hierarchical matrix compression of the two-electron integrals

H Hongji Gao (Institute for Advanced Computational Science, Stony Brook University 1 , Stony Brook, New York 11794,) X Xiangmin Jiao (Institute for Advanced Computational Science, Stony Brook University 1 , Stony Brook, New York 11794,) B Benjamin G. Levine (Department of Chemistry)

Abstract

Leveraging matrix sparsity has proven to be a fruitful strategy for accelerating quantum chemical calculations. Here, we present the hierarchical SOS-MP2 algorithm, which uses hierarchical matrix (H2) compression of the electron repulsion integral (ERI) tensor to reduce both time and space complexity. This approach is based on the atomic orbital Laplace transform MP2 calculations, leveraging the data-sparsity of the ERI tensor and the element-wise sparsity of the energy-weighted density matrices. The H2 representation approximates the ERI tensor in a block low-rank form, taking advantage of the inherent low-rank nature of the repulsion integrals between distant sets of atoms. The resulting algorithm enables the calculation of the Coulomb-like term of the MP2 energy with a theoretical time complexity of O(N2⁡log⁡N) and a space complexity of O(N2⁡log⁡N), where N denotes the number of basis functions. Numerical tests show asymptotic time and space complexities better than O(N2) for both linear alkanes and three-dimensional water clusters.

Article Details

Volume / Issue Vol. 163, Issue 13
Published October 07, 2025
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)

H

Hongji Gao

Institute for Advanced Computational Science, Stony Brook University 1 , Stony Brook, New York 11794,

X

Xiangmin Jiao

Institute for Advanced Computational Science, Stony Brook University 1 , Stony Brook, New York 11794,

B

Benjamin G. Levine

Department of Chemistry