Stochastic approach to phonon-assisted optical absorption
Abstract
We develop a first-principles theory of phonon-assisted optical absorption in semiconductors and insulators which incorporates the temperature dependence of the electronic structure. We show that the Hall-Bardeen-Blatt theory of indirect optical absorption and the Allen-Heine theory of temperature-dependent band structures can be derived from the present formalism by retaining only one-phonon processes. We demonstrate this method by calculating the optical absorption coefficient of silicon using an importance sampling Monte Carlo scheme, and we obtain temperature-dependent lineshapes and band gaps in good agreement with experiment. The present approach opens the way to predictive calculations of the optical properties of solids at finite temperature.
Cite
@article{arxiv.1510.06352,
title = {Stochastic approach to phonon-assisted optical absorption},
author = {Marios Zacharias and Christopher E. Patrick and Feliciano Giustino},
journal= {arXiv preprint arXiv:1510.06352},
year = {2015}
}
Comments
11 pages, 9 figures