Random Walks, Reaction-Diffusion, and Nonequilibrium Dynamics of Spin Chains in One-dimensional Random Environments
Condensed Matter
2009-10-30 v2
Abstract
Sinai's model of diffusion in one-dimension with random local bias is studied by a real space renormalization group which yields asymptotically exact long time results. The distribution of the position of a particle and the probability of it not returning to the origin are obtained, as well as the two-time distribution which exhibits "aging" with scaling and a singularity at . The effects of a small uniform force are also studied. Extension to motion of many domain walls yields non-equilibrium time dependent correlations for the 1D random field Ising model with Glauber dynamics and "persistence" exponents of 1D reaction-diffusion models with random forces.
Keywords
Cite
@article{arxiv.cond-mat/9710270,
title = {Random Walks, Reaction-Diffusion, and Nonequilibrium Dynamics of Spin Chains in One-dimensional Random Environments},
author = {Daniel Fisher and Pierre Le Doussal and Cecile Monthus},
journal= {arXiv preprint arXiv:cond-mat/9710270},
year = {2009}
}
Comments
5 pages, 1 figures, RevTex