4 pages, 4 figs Journal: Phys. Rev. Lett. 106, 135702 (2011)Dense particle packings acquire rigidity through a nonequilibrium jamming transition commonly observed in materials from emulsions to sandpiles. We describe athermal packings and their observed geometric phase transitions using fully equilibrium statistical mechanics and develop a microscopic many-body mean-field theory of the jamming transition for soft repulsive spherical particles. We derive analytically some of the scaling laws and exponents characterizing the transition and obtain predictions for microscopic correlation functions of jammed states that are amenable to experimental verifications, and whose accuracy we confirm using computer simulations
While the large majority of theoretical and numerical studies of the jamming transition consider ath...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
31 pages, 18 figures; long version of arXiv:1011.5638 Journal: Phys. Rev. E 84, 051103 (2011)Interna...
We review some recent results on Statistical Mechanics approach to dense granular media. In particul...
We review some recent results on Statistical Mechanics approach to dense granular media. In particul...
We review some recent results on Statistical Mechanics approach to dense granular media. In particul...
Athermal packings of soft repulsive spheres exhibit a sharp jamming transition in the thermodynamic ...
3siWe numerically study the jamming transition of frictionless polydisperse spheres in three dimensi...
We discuss some recent results on Statistical Mechanics approach to dense granular media. In particu...
Athermal packings of soft repulsive spheres exhibit a sharp jamming transition in the thermodynamic ...
We discuss some recent results on Statistical Mechanics approach to dense granular media. In particu...
We review the physics of jamming from the theoretical, experimental and numerical perspectives. We s...
Numerous soft materials jam into an amorphous solid at a high packing fraction. This nonequilibrium ...
We numerically study the jamming transition of frictionless polydisperse spheres in three dimension...
While the large majority of theoretical and numerical studies of the jamming transition consider ath...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
31 pages, 18 figures; long version of arXiv:1011.5638 Journal: Phys. Rev. E 84, 051103 (2011)Interna...
We review some recent results on Statistical Mechanics approach to dense granular media. In particul...
We review some recent results on Statistical Mechanics approach to dense granular media. In particul...
We review some recent results on Statistical Mechanics approach to dense granular media. In particul...
Athermal packings of soft repulsive spheres exhibit a sharp jamming transition in the thermodynamic ...
3siWe numerically study the jamming transition of frictionless polydisperse spheres in three dimensi...
We discuss some recent results on Statistical Mechanics approach to dense granular media. In particu...
Athermal packings of soft repulsive spheres exhibit a sharp jamming transition in the thermodynamic ...
We discuss some recent results on Statistical Mechanics approach to dense granular media. In particu...
We review the physics of jamming from the theoretical, experimental and numerical perspectives. We s...
Numerous soft materials jam into an amorphous solid at a high packing fraction. This nonequilibrium ...
We numerically study the jamming transition of frictionless polydisperse spheres in three dimension...
While the large majority of theoretical and numerical studies of the jamming transition consider ath...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...