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arXiv:1101.4097 [cond-mat.stat-mech]AbstractReferencesReviewsResources

On anomalous diffusion and the out of equilibrium response function in one-dimensional models

D Villamaina, A Sarracino, G Gradenigo, A Puglisi, A Vulpiani

Published 2011-01-21Version 1

We study how the Einstein relation between spontaneous fluctuations and the response to an external perturbation holds in the absence of currents, for the comb model and the elastic single-file, which are examples of systems with subdiffusive transport properties. The relevance of non-equilibrium conditions is investigated: when a stationary current (in the form of a drift or an energy flux) is present, the Einstein relation breaks down, as is known to happen in systems with standard diffusion. In the case of the comb model, a general relation, which has appeared in the recent literature, between the response function and an unperturbed suitable correlation function, allows us to explain the observed results. This suggests that a relevant ingredient in breaking the Einstein formula, for stationary regimes, is not the anomalous diffusion but the presence of currents driving the system out of equilibrium.

Comments: 10 pages, 4 figures
Journal: J. Stat. Mech. (2011) L01002
Categories: cond-mat.stat-mech
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