English

Hybrid Phase Transition into an Absorbing State: Percolation and Avalanches

Statistical Mechanics 2016-04-12 v2

Abstract

Interdependent networks are more fragile under random attacks than simplex networks, because interlayer dependencies lead to cascading failures and finally to a sudden collapse. This is a hybrid phase transition (HPT), meaning that at the transition point the order parameter has a jump but there are also critical phenomena related to it. Here we study these phenomena on the Erd\H{o}s--R\'enyi and the two dimensional interdependent networks and show that the hybrid percolation transition exhibits two kinds of critical behaviors: divergence of the fluctuations of the order parameter and power-law size distribution of finite avalanches at a transition point. At the transition point, avalanches of infinite size occur thus the avalanche statistics also has the nature of a HPT. The exponent βm\beta_m of the order parameter is 1/21/2 under general conditions, while the value of the exponent γm\gamma_m characterizing the fluctuations of the order parameter depends on the system. The critical behavior of the finite avalanches can be described by another set of exponents, βa\beta_a and γa\gamma_a. These two critical behaviors are coupled by a scaling law: 1βm=γa1-\beta_m=\gamma_a.

Keywords

Cite

@article{arxiv.1512.08335,
  title  = {Hybrid Phase Transition into an Absorbing State: Percolation and Avalanches},
  author = {Deokjae Lee and S. Choi and M. Stippinger and J. Kertész and B. Kahng},
  journal= {arXiv preprint arXiv:1512.08335},
  year   = {2016}
}