English

Coordinate Descent Full Configuration Interaction for Excited States

Chemical Physics 2023-08-23 v2 Computational Physics

Abstract

An efficient excited state method, named xCDFCI, in the configuration interaction framework, is proposed. xCDFCI extends the unconstrained nonconvex optimization problem in coordinate descent full configuration interaction~(CDFCI) to a multicolumn version, for low-lying excited states computation. The optimization problem is addressed via a tailored coordinate descent method. In each iteration, a determinant is selected based on an approximated gradient, and coefficients of all states associated with the selected determinant are updated. A deterministic compression is applied to limit memory usage. We test xCDFCI applied to H2O and N2 molecules under the cc-pVDZ basis set. For both systems, five low-lying excited states in the same symmetry sector are calculated together with the ground state. xCDFCI also produces accurate binding curves of carbon dimer in the cc-pVDZ basis with chemical accuracy, where the ground state and four excited states in the same symmetry sector are benchmarked.

Cite

@article{arxiv.2304.13380,
  title  = {Coordinate Descent Full Configuration Interaction for Excited States},
  author = {Zhe Wang and Zhiyuan Zhang and Jianfeng Lu and Yingzhou Li},
  journal= {arXiv preprint arXiv:2304.13380},
  year   = {2023}
}
R2 v1 2026-06-28T10:18:14.625Z