English

Random graph asymptotics on high-dimensional tori. II. Volume, diameter and mixing time

Probability 2019-07-16 v4 Mathematical Physics math.MP

Abstract

For critical bond-percolation on high-dimensional torus, this paper proves sharp lower bounds on the size of the largest cluster, removing a logarithmic correction in the lower bound in Heydenreich and van der Hofstad (2007). This improvement finally settles a conjecture by Aizenman (1997) about the role of boundary conditions in critical high-dimensional percolation, and it is a key step in deriving further properties of critical percolation on the torus. Indeed, a criterion of Nachmias and Peres (2008) implies appropriate bounds on diameter and mixing time of the largest clusters. We further prove that the volume bounds apply also to any finite number of the largest clusters. The main conclusion of the paper is that the behavior of critical percolation on the high-dimensional torus is the same as for critical Erdos-Renyi random graphs. In this updated version we incorporate an erratum to be published in a forthcoming issue of Probab. Theory Relat. Fields. This results in a modification of Theorem 1.2 as well as Proposition 3.1.

Keywords

Cite

@article{arxiv.0903.4279,
  title  = {Random graph asymptotics on high-dimensional tori. II. Volume, diameter and mixing time},
  author = {Markus Heydenreich and Remco van der Hofstad},
  journal= {arXiv preprint arXiv:0903.4279},
  year   = {2019}
}

Comments

16 pages. v4 incorporates an erratum to be published in a forthcoming issue of Probab. Theory Relat. Fields

R2 v1 2026-06-21T12:44:13.311Z