Thermal conductivity of nonlinear waves in disordered chains
Statistical Mechanics
2015-05-27 v1 Disordered Systems and Neural Networks
Abstract
We present computational data on the thermal conductivity of nonlinear waves in disordered chains. Disorder induces Anderson localization for linear waves and results in a vanishing conductivity. Cubic nonlinearity restores normal conductivity, but with a strongly temperature-dependent conductivity . We find indications for an asymptotic low-temperature and intermediate temperature laws. These findings are in accord with theoretical studies of wave packet spreading, where a regime of strong chaos is found to be intermediate, followed by an asymptotic regime of weak chaos (EPL 91 (2010) 30001).
Cite
@article{arxiv.1101.4530,
title = {Thermal conductivity of nonlinear waves in disordered chains},
author = {Sergej Flach and Mikhail Ivanchenko and Nianbei Li},
journal= {arXiv preprint arXiv:1101.4530},
year = {2015}
}
Comments
8 pages, 3 figures