English

Time scale separation in the low temperature East model: Rigorous results

Statistical Mechanics 2015-06-12 v2 Mathematical Physics math.MP

Abstract

We consider the non-equilibrium dynamics of the East model, a linear chain of 0-1 spins evolving under a simple Glauber dynamics in the presence of a kinetic constraint which forbids flips of those spins whose left neighbour is 1. We focus on the glassy effects caused by the kinetic constraint as q0q\downarrow 0, where qq is the equilibrium density of the 0's. Specifically we analyse time scale separation and dynamic heterogeneity, i.e. non-trivial spatio-temporal fluctuations of the local relaxation to equilibrium, one of the central aspects of glassy dynamics. For any mesoscopic length scale L=O(qγ)L=O(q^{-\gamma}), γ<1\gamma<1, we show that the characteristic time scale associated to two length scales d/qγd/q^\gamma and d/qγd'/q^\gamma are indeed separated by a factor qaq^{-a}, a=a(γ)>0a=a(\gamma)>0, provided that d/dd'/d is large enough independently of qq. In particular, the evolution of mesoscopic domains, i.e. maximal blocks of the form 111..10111..10, occurs on a time scale which depends sharply on the size of the domain, a clear signature of dynamic heterogeneity. Finally we show that no form of time scale separation can occur for γ=1\gamma=1, i.e. at the equilibrium scale L=1/qL=1/q, contrary to what was previously assumed in the physical literature based on numerical simulations.

Keywords

Cite

@article{arxiv.1212.2956,
  title  = {Time scale separation in the low temperature East model: Rigorous results},
  author = {Paul Chleboun and Alessandra Faggionato and Fabio Martinelli},
  journal= {arXiv preprint arXiv:1212.2956},
  year   = {2015}
}

Comments

6 pages, 0 figures; clarified q dependence of bounds, results unchanged

R2 v1 2026-06-21T22:53:31.997Z