English

Re-examining the electronic structure of germanium: A first-principle study

Materials Science 2013-09-13 v2

Abstract

We report results from an efficient, robust, ab-initio method for self-consistent calculations of electronic and structural properties of Ge. Our non-relativistic calculations employed a generalized gradient approximation (GGA) potential and the linear combination of atomic orbitals (LCAO) formalism. The distinctive feature of our computations stem from the use of Bagayoko-Zhao-Williams-Ekuma-Franklin (BZW-EF) method. Our results are in agreement with experimental ones where the latter are available. In particular, our theoretical, indirect band gap of 0.65 eV, at the experimental lattice constant of 5.66 \AA{}, is in excellent agreement with experiment. Our predicted, equilibrium lattice constant is 5.63 \AA{}, with a corresponding indirect band gap of 0.65 eV and a bulk modulus of 80 GPa. We also calculated the effective masses in various directions with respect to the Γ\Gamma point.

Keywords

Cite

@article{arxiv.1302.3396,
  title  = {Re-examining the electronic structure of germanium: A first-principle study},
  author = {C. E. Ekuma and M. Jarrell and J. Moreno and G. L. Zhao and D. Bagayoko},
  journal= {arXiv preprint arXiv:1302.3396},
  year   = {2013}
}

Comments

10 Pages, 3 Figures, and 1 table

R2 v1 2026-06-21T23:26:07.865Z