Percolation transitions in two dimensions

Xiaomei Feng, Youjin Deng, and Henk W. J. Blöte
Phys. Rev. E 78, 031136 – Published 30 September 2008

Abstract

We investigate bond- and site-percolation models on several two-dimensional lattices numerically, by means of transfer-matrix calculations and Monte Carlo simulations. The lattices include the square, triangular, honeycomb kagome, and diced lattices with nearest-neighbor bonds, and the square lattice with nearest- and next-nearest-neighbor bonds. Results are presented for the bond-percolation thresholds of the kagome and diced lattices, and the site-percolation thresholds of the square, honeycomb, and diced lattices. We also include the bond- and site-percolation thresholds for the square lattice with nearest- and next-nearest-neighbor bonds. We find that corrections to scaling behave according to the second temperature dimension Xt2=4 predicted by the Coulomb gas theory and the theory of conformal invariance. In several cases there is evidence for an additional term with the same exponent, but modified by a logarithmic factor. Only for the site-percolation problem on the triangular lattice does such a logarithmic term appear to be small or absent. The amplitude of the power-law correction associated with Xt2=4 is found to be dependent on the orientation of the lattice with respect to the cylindrical geometry of the finite systems.

  • Figure
  • Received 30 May 2008

DOI:https://doi.org/10.1103/PhysRevE.78.031136

©2008 American Physical Society

Authors & Affiliations

Xiaomei Feng1,2, Youjin Deng3, and Henk W. J. Blöte1,4

  • 1Faculty of Applied Sciences, Delft University of Technology, P. O. Box 5046, 2600 GA Delft, The Netherlands
  • 2Nanjing University of Aeronautics and Astronautics, 29 Yudao Street, 210016 Nanjing, People’s Republic of China
  • 3Physikalisches Institut, Universität Heidelberg, Philosophenweg 12, 69120 Heidelberg, Germany
  • 4Lorentz Institute, Leiden University, P. O. Box 9506, 2300 RA Leiden, The Netherlands*

  • *Present address.

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Issue

Vol. 78, Iss. 3 — September 2008

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