English

Explosive site percolation and finite size hysteresis

Statistical Mechanics 2013-05-29 v3

Abstract

We report the critical point for site percolation for the "explosive" type for 2D square lattices using Monte Carlo simulations and compare it to the classical well known percolation. We use similar algorithms as have been recently reported for bond percolation and networks. We calculate the "explosive" site percolation threshold as pc=0.695p_c=0.695 and we find evidence that "explosive" site percolation surprisingly may belong to a different universality class than bond percolation on lattices, providing that the transitions (a) are continuous and (b) obey the conventional finite size scaling forms. We do not attempt to determine the order of the explosive transition. Finally, we study and compare the direct and reverse processes, showing that while the reverse process is different from the direct process for finite size systems, the two cases become equivalent in the thermodynamic limit of large LL.

Keywords

Cite

@article{arxiv.1105.1098,
  title  = {Explosive site percolation and finite size hysteresis},
  author = {Nikolaos Bastas and Kosmas Kosmidis and Panos Argyrakis},
  journal= {arXiv preprint arXiv:1105.1098},
  year   = {2013}
}

Comments

Revised version,6 pages, new extra figures

R2 v1 2026-06-21T18:03:20.900Z