Energy Spreading in Strongly Nonlinear Disordered Lattices
Chaotic Dynamics
2013-05-13 v2 Disordered Systems and Neural Networks
Statistical Mechanics
Abstract
We study scaling properties of energy spreading in disordered strongly nonlinear Hamiltonian lattices. Such lattices consist of nonlinearly coupled local linear or nonlinear oscillators, and demonstrate a rather slow, subdiffusive spreading of initially localized wave p ackets. We use a fractional nonlinear diffusion equation as a heuristic model of this process, and confirm that the scaling predictions resulting from a self-similar solution of this equation are indeed applicable to all studied cases. We s how that the spreading in nonlinearly coupled linear oscillators slows down compared to a pure power law, while for nonlinear local oscillators a power law is valid in the whole studied range of parameters.
Cite
@article{arxiv.1205.3592,
title = {Energy Spreading in Strongly Nonlinear Disordered Lattices},
author = {M. Mulansky and A. Pikovsky},
journal= {arXiv preprint arXiv:1205.3592},
year = {2013}
}
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25 Pages