paper

Performance of periodic EOM-CCSD for band gaps of inorganic semiconductors and insulators

arXiv:2310.03887

Abstract

We calculate the band gaps of 12 inorganic semiconductors and insulators composed of atoms from the first three rows of the periodic table using periodic equation-of-motion coupled-cluster theory with single and double excitations (EOM-CCSD). Our calculations are performed with atom-centered triple-zeta basis sets and up to 64 -points in the Brillouin zone. We analyze the convergence behavior with respect to number of orbitals and number of -points sampled, using composite corrections and extrapolations to produce our final values. When accounting for electron-phonon corrections to experimental band gaps, we find that EOM-CCSD has a mean signed error of eV and a mean absolute error of eV; the largest outliers are C (error of eV), BP ( eV), and LiH ( eV). Surprisingly, we find that the more affordable partitioned EOM-MP2 theory performs as well as EOM-CCSD.

6 pages, 5 figures, 1 table