| Literature DB >> 15549887 |
C Chamon1, P Charbonneau, L F Cugliandolo, D R Reichman, M Sellitto.
Abstract
In this paper we extend the earlier treatment of out-of-equilibrium mesoscopic fluctuations in glassy systems in several significant ways. First, via extensive simulations, we demonstrate that models of glassy behavior without quenched disorder display scalings of the probability of local two-time correlators that are qualitatively similar to that of models with short-ranged quenched interactions. The key ingredient for such scaling properties is shown to be the development of a criticallike dynamical correlation length, and not other microscopic details. This robust data collapse may be described in terms of a time-evolving "extreme value" distribution. We develop a theory to describe both the form and evolution of these distributions based on a effective sigma model approach. Copyright 2004 American Institute of Physics.Year: 2004 PMID: 15549887 DOI: 10.1063/1.1809585
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488