Edwards Statistical Mechanics for Jammed Granular Matter
Adrian Baule, Flaviano Morone, Hans J. Herrmann, and Hern\'an A. Makse

TL;DR
This paper reviews the Edwards statistical mechanical ensemble approach to jammed granular matter, discussing its theoretical foundations, experimental validation, and applicability across diverse particle shapes and conditions, aiming to unify understanding of jammed states.
Contribution
It provides a comprehensive overview of the Edwards ensemble framework, including construction, approximation schemes, and its extension to various particle types and dimensions, linking jammed matter to spin-glass theory.
Findings
Validation of Edwards ergodic hypothesis for jammed states
Quantitative predictions for packing fractions and force distributions
Unification of jammed matter models across particle shapes and dimensions
Abstract
In 1989, Sir Sam Edwards made the visionary proposition to treat jammed granular materials using a volume ensemble of equiprobable jammed states in analogy to thermal equilibrium statistical mechanics, despite their inherent athermal features. Since then, the statistical mechanics approach for jammed matter has garnered an extraordinary amount of attention by both theorists and experimentalists. Here, we review a systematic approach to jammed matter based on the Edwards statistical mechanical ensemble. We discuss the construction of microcanonical and canonical ensembles based on the volume function, which replaces the Hamiltonian in jammed systems. The importance of approximation schemes at various levels is emphasized leading to quantitative predictions for ensemble averaged quantities such as packing fractions and contact force distributions. An overview of the phenomenology of…
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