Observable Dependent Quasi-Equilibrium in Slow Dynamics
Abstract
We present examples demonstrating that quasi-equilibrium fluctuation-dissipation behavior at short time differences is not a generic feature of systems with slow non-equilibrium dynamics. We analyze in detail the non-equilibrium fluctuation-dissipation ratio X(t,tw) associated with a defect-pair observable in the Glauber-Ising spin chain. It turns out that throughout the short-time regime and in particular X(tw,tw) = 3/4 for . The analysis is extended to observables detecting defects at a finite distance from each other, where similar violations of quasi-equilibrium behaviour are found. We discuss our results in the context of metastable states, which suggests that a violation of short-time quasi-equilibrium behavior could occur in general glassy systems for appropriately chosen observables.
Cite
@article{arxiv.cond-mat/0405711,
title = {Observable Dependent Quasi-Equilibrium in Slow Dynamics},
author = {Peter Mayer and Peter Sollich},
journal= {arXiv preprint arXiv:cond-mat/0405711},
year = {2007}
}
Comments
17 pages, 5 figures; substantially improved version of cond-mat/0405711