English

Equivalent-neighbor percolation models in two dimensions: crossover between mean-field and short-range behavior

Statistical Mechanics 2018-12-12 v1

Abstract

We investigate the influence of the range of interactions in the two-dimensional bond percolation model, by means of Monte Carlo simulations. We locate the phase transitions for several interaction ranges, as expressed by the number zz of equivalent neighbors. We also consider the zz \to \infty limit, i.e., the complete graph case, where percolation bonds are allowed between each pair of sites, and the model becomes mean-field-like. All investigated models with finite zz are found to belong to the short-range universality class. There is no evidence of a tricritical point separating the short-range and long-range behavior, such as is known to occur for q=3q=3 and q=4q=4 Potts models. We determine the renormalization exponent describing a finite-range perturbation at the mean-field limit as yr2/3y_r \approx 2/3. Its relevance confirms the continuous crossover from mean-field percolation universality to short-range percolation universality. For finite interaction ranges, we find approximate relations between the coordination numbers and the amplitudes of the leading correction terms as found in the finite-size scaling analysis.

Keywords

Cite

@article{arxiv.1808.05812,
  title  = {Equivalent-neighbor percolation models in two dimensions: crossover between mean-field and short-range behavior},
  author = {Yunqing Ouyang and Youjin Deng and Henk W. J. Blöte},
  journal= {arXiv preprint arXiv:1808.05812},
  year   = {2018}
}
R2 v1 2026-06-23T03:36:42.609Z