Universality of Fluctuation-Dissipation Ratios: The Ferromagnetic Model
Abstract
We calculate analytically the fluctuation-dissipation ratio (FDR) for Ising ferromagnets quenched to criticality, both for the long-range model and its short-range analogue in the limit of large dimension. Our exact solution shows that, for both models, if the system is unmagnetized while if the initial magnetization is non-zero. This indicates that two different classes of critical coarsening dynamics need to be distinguished depending on the initial conditions, each with its own nontrivial FDR. We also analyze the dependence of the FDR on whether local and global observables are used. These results clarify how a proper local FDR (and the corresponding effective temperature) should be defined in long-range models in order to avoid spurious inconsistencies and maintain the expected correspondence between local and global results; global observables turn out to be far more robust tools for detecting non-equilibrium FDRs.
Keywords
Cite
@article{arxiv.cond-mat/0508243,
title = {Universality of Fluctuation-Dissipation Ratios: The Ferromagnetic Model},
author = {A. Garriga and P. Sollich and I. Pagonabarraga and F. Ritort},
journal= {arXiv preprint arXiv:cond-mat/0508243},
year = {2013}
}
Comments
14 pages, revtex4, published version. Changes from v1: added discussion of refs [16,36,37], other observables and local correlation/response in short-range model