arXiv · cond-mat/0312232
Non-equilibrium two-phase coexistence in a confined granular layer
Abstract
We report the observation of the homogenous nucleation of crystals in a dense layer of steel spheres confined between two horizontal plates vibrated vertically. Above a critical vibration amplitude, two-layer crystals with square symmetry were found to coexist in steady state with a surrounding granular liquid. By analogy to equilibrium hard sphere systems, the phase behavior can be explained through entropy maximization. However, dramatic non-equilibrium effects are present, including a significant difference in the granular temperatures of the two phases.
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Alexis Prevost, Paul Melby, David A. Egolf, Jeffrey S. Urbach. 2004-06-25. Non-equilibrium two-phase coexistence in a confined granular layer. https://doi.org/10.1103/physreve.70.050301
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