Simulational Study on Dimensionality-Dependence of Heat Conduction
Abstract
Heat conduction phenomena are studied theoretically using computer simulation. The systems are crystal with nonlinear interaction, and fluid of hard-core particles. Quasi-one-dimensional system of the size of is simulated. Heat baths are put in both end: one has higher temperature than the other. In the crystal case, the interaction potential has fourth-order non-linear term in addition to the harmonic term, and Nose-Hoover method is used for the heat baths. In the fluid case, stochastic boundary condition is charged, which works as the heat baths. Fourier-type heat conduction is reproduced both in crystal and fluid models in three-dimensional system, but it is not observed in lower dimensional system. Autocorrelation function of heat flux is also observed and long-time tails of the form of , where denotes the dimensionality of the system, are confirmed.
Cite
@article{arxiv.cond-mat/0006015,
title = {Simulational Study on Dimensionality-Dependence of Heat Conduction},
author = {Takashi Shimada and Teruyoshi Murakami and Satoshi Yukawa and Keiji Saito and Nobuyasu Ito},
journal= {arXiv preprint arXiv:cond-mat/0006015},
year = {2009}
}
Comments
4 pages including 3 figures