A first-order phase transition at the random close packing of hard spheres
arXiv:1001.5287 · doi:10.1016/j.physa.2010.08.010
Abstract
Randomly packing spheres of equal size into a container consistently results in a static configuration with a density of ~64%. The ubiquity of random close packing (RCP) rather than the optimal crystalline array at 74% begs the question of the physical law behind this empirically deduced state. Indeed, there is no signature of any macroscopic quantity with a discontinuity associated with the observed packing limit. Here we show that RCP can be interpreted as a manifestation of a thermodynamic singularity, which defines it as the "freezing point" in a first-order phase transition between ordered and disordered packing phases. Despite the athermal nature of granular matter, we show the thermodynamic character of the transition in that it is accompanied by sharp discontinuities in volume and entropy. This occurs at a critical compactivity, which is the intensive variable that plays the role of temperature in granular matter. Our results predict the experimental conditions necessary for the formation of a jammed crystal by calculating an analogue of the "entropy of fusion". This approach is useful since it maps out-of-equilibrium problems in complex systems onto simpler established frameworks in statistical mechanics.
33 pages, 10 figures
References in corpus (9)
- Disordered, Quasicrystalline and Crystalline Phases of Densely Packed Tetrahedra
- Packing Hyperspheres in High-Dimensional Euclidean Spaces
- Why is Random Close Packing Reproducible?
- Stationary state volume fluctuations in a granular medium
- A Landscape Analysis of Constraint Satisfaction Problems
- Thermodynamics and Statistical Mechanics of dense granular media
- Local and Global relations between the number of contacts and density in monodisperse sphere packs
- Random close packing of granular matter
- First-order phase transition and the equation of state in a 2D granular fluid
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