Jamming as a critical phenomenon: a field theory of zero-temperature grain packings
arXiv:cond-mat/0504371 · doi:10.1103/PhysRevLett.95.198002
Abstract
A field theory of frictionless grain packings in two dimensions is shown to exhibit a zero-temperature critical point at a non-zero value of the packing fraction. The zero-temperature constraint of force-balance plays a crucial role in determining the nature of the transition. Two order parameters, <z>, the deviation of the average number of contacts from the isostatic value and, <F>, the average magnitude of the force per contact, characterize the transition from the jammed (high packing fraction) to the unjammed (low packing fraction state). The critical point has a mixed character with the order parameters showing a jump discontinuity but with fluctuations of the contact force diverging. At the critical point, the distribution of F shows the characteristic plateau observed in static granular piles. The theory makes falsifiable predictions about the spatial fluctuations of the contact forces. Implications for finite temperature dynamics and generalizations to frictional packings and higher dimensions are discussed
4 pages, 2 figures
References in corpus (7)
- Jamming at Zero Temperature and Zero Applied Stress: the Epitome of Disorder
- Geometrical explanation and scaling of dynamical heterogeneities in glass forming systems
- Absence of Suppression in Particle Production at Large Transverse Momentum in sqrt(s_NN) = 200 GeV d+Au Collisions
- Vibrations and diverging length scales near the unjamming transition
- Spatial structures and dynamics of kinetically constrained models for glasses
- Marginal scaling scenario and analytic results for a glassy compaction model
- Landau theory of glassy dynamics
Cited by in corpus (38)
- The Jamming Transition in Granular Systems
- Critical Scaling of Shear Viscosity at the Jamming Transition
- The jamming transition as probed by quasistatic shear flow
- A statistical mechanics framework for static granular matter
- Entropy and Temperature of a Static Granular Assembly
- Reynolds Pressure and Relaxation in a Sheared Granular System
- The Statistical Physics of Athermal Materials
- Deformation of crystals: Connections with statistical physics
- Structural signatures of the unjamming transition at zero temperature
- Finite-Size-Scaling at the Jamming Transition: Corrections to Scaling and the Correlation Length Critical Exponent
- From Crystals to Disordered Crystals: A Hidden Order-Disorder Transition
- Why Do Granular Materials Stiffen with Shear Rate? A Test of Novel Stress-Based Statistics
- Experimental study of the jamming transition at zero temperature
- Deformations, relaxation and broken symmetries in liquids, solids and glasses: a unified topological field theory
- Fluctuations, Jamming, and Yielding for a Driven Probe Particle in Disordered Disk Assemblies
- Jamming in Granular Polymers
- Jamming II: Edwards' statistical mechanics of random packings of hard spheres
- Protocol-Dependence and State Variables in the Force-Moment Ensemble
- Sensitivity of Granular Force Chain Orientation to Disorder-induced Metastable Relaxation
- Effective potential approach to hybrid synchronization transitions
- Fragility and hysteretic creep in frictional granular jamming
- Edwards thermodynamics of the jamming transition for frictionless packings: ergodicity test and role of angoricity and compactivity
- Softening of Granular Packings with Dynamic Forcing
- Mixed-order phase transition in a colloidal crystal
- Master equation for the probability distribution functions of forces in soft particle packings
- Angoricity and compactivity describe the jamming transition in soft particulate matter
- Edwards field theory for glasses and granular matter
- Jamming III: Characterizing Randomness via the Entropy of Jammed Matter
- Force networks and the dynamic approach to jamming in sheared granular media
- Jamming graphs: A local approach to global mechanical rigidity
- From force distribution to average coordination number in frictional granular matter
- Packing structure of a two-dimensional granular system through the jamming transition
- Can the jamming transition be described using equilibrium statistical mechanics?
- First contact breaking distributions in strained disordered crystals
- Force network analysis of jammed solids
- From crystal to amorphopus: a novel route towards unjamming in soft disk packings
- Crossover from Jamming to Clogging Behaviors in Heterogeneous Environments
- Experimental measurements of the granular density of modes via impact