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Rejuvenation and Memory Effects in a Structural Glass

Published 21 Feb 2019 in cond-mat.soft, cond-mat.dis-nn, and cond-mat.stat-mech | (1902.08082v1)

Abstract: We show numerically that a three-dimensional model for structural glass displays aging, rejuvenation and memory effects when submitted to a temperature cycle. These effects indicate that the free energy landscape of structural glasses may possess the complex hierarchical structure that characterize materials such as spin and polymer glasses. We use the theoretical concept of marginal stability to interpret our results, and explain in which physical conditions a complex aging dynamics can emerge in dense supercooled liquids, paving the way for future experimental studies of complex aging dynamics in colloidal and granular glasses.

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