English

Avalanches and the Directed Percolation Depinning Model: Experiments, Simulations and Theory

Condensed Matter 2009-10-22 v1

Abstract

We study the recently-introduced directed percolation depinning (DPD) model for interface roughening with quenched disorder for which the interface becomes pinned by a directed percolation (DP) cluster for d=1d = 1, or a directed surface (DS) for d>1d > 1. The mapping to DP enables us to predict some of the critical exponents of the growth process. For the case of (1+1)(1+1) dimensions, the theory predicts that the roughness exponent α\alpha is given by α=ν/ν\alpha = \nu_{\perp} / \nu_{\parallel}, where ν\nu_{\perp} and ν\nu_{\parallel} are the exponents governing the divergence of perpendicular and parallel correlation lengths of the DP incipient infinite cluster. The theory also predicts that the dynamical exponent zz equals the exponent dmind_{\rm min} characterizing the scaling of the shortest path on a isotropic percolation cluster. The exponent α\alpha decreases monotonically with dd but does not seem to approach zero for any dimension calculated (d6d \le 6), suggesting that the DPD model has no upper critical dimension for the static exponents. On the other hand, zz appears to approach 22 as d6d \rightarrow 6, as expected by the result z=dminz = d_{\rm min}, suggesting that dc=6d_c = 6 for the dynamics. We also perform a set of imbibition experiments, in both (1+1)(1+1) and (2+1)(2+1) dimensions, that can be used to test the DPD model. We find good agreement between experimental, theoretical and numerical approaches. Further, we study the properties of avalanches in the context of the DPD model. We relate the scaling properties of the avalanches in the DPD model to the scaling properties for the self-organized depinning (SOD) model, a variant of the DPD model. We calculate the exponent characterizing the avalanches distribution τaval\tau_{\rm aval} for d=1d = 1 to d=6d = 6, and compare our results with recent theoretical

Keywords

Cite

@article{arxiv.cond-mat/9412047,
  title  = {Avalanches and the Directed Percolation Depinning Model: Experiments, Simulations and Theory},
  author = {L. A. N. Amaral and A. -L. Barabasi and S. V. Buldyrev and S. T. Harrington and S. Havlin and R. Sadr-Lahijany and H. E. Stanley},
  journal= {arXiv preprint arXiv:cond-mat/9412047},
  year   = {2009}
}

Comments

RevTex manuscript 17 pages, 69 references and 19 figures (obtained upon request via email [email protected])