English

Crossover from Isotropic to Directed Percolation

Statistical Mechanics 2012-08-21 v4

Abstract

We generalize the directed percolation (DP) model by relaxing the strict directionality of DP such that propagation can occur in either direction but with anisotropic probabilities. We denote the probabilities as p=ppdp_{\downarrow}= p \cdot p_d and p=p(1pd)p_{\uparrow}=p \cdot (1-p_d), with pp representing the average occupation probability and pdp_d controlling the anisotropy. The Leath-Alexandrowicz method is used to grow a cluster from an active seed site. We call this model with two main growth directions {\em biased directed percolation} (BDP). Standard isotropic percolation (IP) and DP are the two limiting cases of the BDP model, corresponding to pd=1/2p_d=1/2 and pd=0,1p_d=0,1 respectively. In this work, besides IP and DP, we also consider the 1/2<pd<11/2<p_d<1 region. Extensive Monte Carlo simulations are carried out on the square and the simple-cubic lattices, and the numerical data are analyzed by finite-size scaling. We locate the percolation thresholds of the BDP model for pd=0.6p_d=0.6 and 0.8, and determine various critical exponents. These exponents are found to be consistent with those for standard DP. We also determine the renormalization exponent associated with the asymmetric perturbation due to pd1/20p_d -1/2 \neq 0 near IP, and confirm that such an asymmetric scaling field is relevant at IP.

Keywords

Cite

@article{arxiv.1109.6567,
  title  = {Crossover from Isotropic to Directed Percolation},
  author = {Zongzheng Zhou and Ji Yang and Robert M. Ziff and Youjin Deng},
  journal= {arXiv preprint arXiv:1109.6567},
  year   = {2012}
}

Comments

8 pages, 8 figures

R2 v1 2026-06-21T19:12:40.160Z