paper

Band structure of GeSnalloy: a full-zone 30-band model

arXiv:1904.04415 · doi:10.1088/1367-2630/ab306f

Abstract

A full-zone 30-band model is developed as an efficient and reliable tool to compute electronic band structure in GeSn alloy. The model was first used to reproduce the electronic band structures in Ge and -Sn obtained with empirical tight binding and \textit{ab initio} methods. Input parameters for the 30-band model are carefully calibrated against prior empirical predications and experimental data. Important material properties such as effective mass for electrons and holes, Luttinger parameters, and density of states are obtained for GeSn alloy with the composition range . The 30-band model that requires far less computing resources is a necessary capability for optimization of sophisticated devices made from GeSn alloy with a large parameter space to explore.

8 pages, 7 figure