Response properties in a model for granular matter
arXiv:cond-mat/9911308 · doi:10.1088/0305-4470/33/24/301
Abstract
We investigate the response properties of granular media in the framework of the so-called {\em Random Tetris Model}. We monitor, for different driving procedures, several quantities: the evolution of the density and of the density profiles, the ageing properties through the two-times correlation functions and the two-times mean-square distance between the potential energies, the response function defined in terms of the difference in the potential energies of two replica driven in two slightly different ways. We focus in particular on the role played by the spatial inhomogeneities (structures) spontaneously emerging during the compaction process, the history of the sample and the driving procedure. It turns out that none of these ingredients can be neglected for the correct interpretation of the experimental or numerical data. We discuss the problem of the optimization of the compaction process and we comment on the validity of our results for the description of granular materials in a thermodynamic framework.
22 pages, 35 eps files (21 figures)
References in corpus (5)
- Fluctuations, response and aging dynamics in a simple glass-forming liquid out of equilibrium
- The adsorption-desorption model and its application to vibrated granular materials
- Criticality of the "critical state" of granular media: Dilatancy angle in the tetris model
- Bubbling and Large-Scale Structures in Avalanche Dynamics
- Entropy for relaxation dynamics in granular media
Cited by in corpus (22)
- Compaction dynamics of a granular media under vertical tapping
- Observing Brownian motion in vibration-fluidized granular matter
- Temperature in and out of equilibrium: a review of concepts, tools and attempts
- Memory Effects in Granular Material
- Edwards' measures: a thermodynamic construction for dense granular media and glasses
- Minimal vertex covers on finite-connectivity random graphs - a hard-sphere lattice-gas picture
- Numerical model for granular compaction under vertical tapping
- Glassy systems under time-dependent driving forces: application to slow granular rheology
- Simple strong glass forming models: mean-field solution with activation
- Statistical mechanics of the vertex-cover problem
- Free-volume kinetic models of granular matter
- What is the temperature of a granular medium?
- Slow dynamics under gravity: a nonlinear diffusion model
- Aging dynamics and density relaxation in granular compaction
- On the definition of temperature in dense granular media
- Memory in aged granular media
- Fluctuation-Dissipation Ratio for Compacting Granular Media
- Linear response of vibrated granular systems to sudden changes in the vibration intensity
- Fluctuation-dissipation relation and the Edwards entropy for a glassy granular compaction model
- Coarsening and Slow-Dynamics in Granular Compaction
- Effective temperature of an aging powder
- A microscopic 2D lattice model of dimer granular compaction with friction