English

A Position-Space Renormalization-Group Approach for Driven Diffusive Systems Applied to the Asymmetric Exclusion Model

Statistical Mechanics 2009-11-07 v2

Abstract

This paper introduces a position-space renormalization-group approach for nonequilibrium systems and applies the method to a driven stochastic one-dimensional gas with open boundaries. The dynamics are characterized by three parameters: the probability α\alpha that a particle will flow into the chain to the leftmost site, the probability β\beta that a particle will flow out from the rightmost site, and the probability pp that a particle will jump to the right if the site to the right is empty. The renormalization-group procedure is conducted within the space of these transition probabilities, which are relevant to the system's dynamics. The method yields a critical point at αc=βc=1/2\alpha_c=\beta_c=1/2,in agreement with the exact values, and the critical exponent ν=2.71\nu=2.71, as compared with the exact value ν=2.00\nu=2.00.

Keywords

Cite

@article{arxiv.cond-mat/0211263,
  title  = {A Position-Space Renormalization-Group Approach for Driven Diffusive Systems Applied to the Asymmetric Exclusion Model},
  author = {Ivan T. Georgiev and Susan R. McKay},
  journal= {arXiv preprint arXiv:cond-mat/0211263},
  year   = {2009}
}

Comments

14 pages, 4 figures

R2 v1 2026-07-22T10:43:20.431Z