Universal features of annealing and aging in compaction of granular piles

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Abstract

This paper links the nonequilibrium glassy relaxation behavior of otherwise athermal granular materials to those of thermally activated glasses. Thus, it demonstrates a much wider universality among complex glassy materials out of equilibrium. Our three-dimensional molecular dynamics simulations, fully incorporating friction and inelastic collisions, are designed to reproduce experimental behavior of tapped granular piles. A simple theory based on a dynamics of records explains why the typical phenomenology of annealing and aging after a quench should extend to such granular matter, activated by taps, beyond the more familiar realm of polymers, colloids, and magnetic materials that all exhibit thermal fluctuations.

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Gago, P. A., & Boettcher, S. (2020). Universal features of annealing and aging in compaction of granular piles. Proceedings of the National Academy of Sciences of the United States of America, 117(52), 33072–33076. https://doi.org/10.1073/PNAS.2012757117

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