English

Efficient basis expansion for describing linear and nonlinear electron dynamics in crystalline solids

Materials Science 2014-07-02 v1

Abstract

We propose an efficient basis expansion for electron orbitals to describe real-time electron dynamics in crystalline solids. Although a conventional grid representation in the three-dimensional Cartesian coordinates works robustly, it requires a large amount of computational resources. To reduce computational costs, we consider an expansion using basis functions with a truncation. A simple choice employing eigenstates of the ground state Hamiltonian with a truncation turned out to be useless. We have found that adding occupied eigenstates of nearby kk-points to the truncated basis functions composed of eigenstates of the original kk-point is crucially important. We demonstrate the usefulness of the method for linear and nonlinear electron dynamics calculations in crystalline SiO2_2.

Keywords

Cite

@article{arxiv.1404.5118,
  title  = {Efficient basis expansion for describing linear and nonlinear electron dynamics in crystalline solids},
  author = {Shunsuke A. Sato and Kazuhiro Yabana},
  journal= {arXiv preprint arXiv:1404.5118},
  year   = {2014}
}
R2 v1 2026-06-22T03:54:38.267Z