The emergence of patterns and phase separation in many-body systems far from thermal equilibrium is discussed using the example of driven granular gases. It is shown that phase separation follows a similar mechanism as in the systems of active Brownian particles. Depending on the quantities chosen for observation, it may or may not be easy to find functionals analogous to the free energy in equilibrium statistical physics. We argue that although such functionals can always be derived from the dynamics, it is of only limited value for predicting relevant aspects of the nonequilibrium steady state of the system. Consequently, although there is indeed a ‘principle’ governing the selection of collective nonequilibrium steady states (and the cor...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
We review some models of granular materials fluidized by means of external forces, such as random ho...
A highly polydisperse granular gas is modeled by a continuous distribution of particle sizes, a , gi...
The emergence of patterns and phase separation in many-body systems far from thermal equilibrium is ...
We describe simulations of a quasi-one-dimensional, vibrated granular gas which exhibits an apparent...
Experiments and computer simulations are carried out to investigate phase separation in a granular g...
The steady states of two vibrated granular gases separated by an adiabatic piston are investigated. ...
We review a few representative examples of granular experiments or models where phase separation, ac...
Far-from-equilibrium phenomena, while abundant in nature, are not nearly as well understood as their...
We present experimental evidence for a strong analogy between quasi-2D uniform non-equilibrium stead...
A class of interacting particle systems modelling driven diffusive systems with short range interact...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
Experiments and computer simulations are carried out to investigate phase separation in a granular g...
In this report we present our work on athermal phase separation of active Brownian particles through...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
We review some models of granular materials fluidized by means of external forces, such as random ho...
A highly polydisperse granular gas is modeled by a continuous distribution of particle sizes, a , gi...
The emergence of patterns and phase separation in many-body systems far from thermal equilibrium is ...
We describe simulations of a quasi-one-dimensional, vibrated granular gas which exhibits an apparent...
Experiments and computer simulations are carried out to investigate phase separation in a granular g...
The steady states of two vibrated granular gases separated by an adiabatic piston are investigated. ...
We review a few representative examples of granular experiments or models where phase separation, ac...
Far-from-equilibrium phenomena, while abundant in nature, are not nearly as well understood as their...
We present experimental evidence for a strong analogy between quasi-2D uniform non-equilibrium stead...
A class of interacting particle systems modelling driven diffusive systems with short range interact...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
Experiments and computer simulations are carried out to investigate phase separation in a granular g...
In this report we present our work on athermal phase separation of active Brownian particles through...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
We review some models of granular materials fluidized by means of external forces, such as random ho...
A highly polydisperse granular gas is modeled by a continuous distribution of particle sizes, a , gi...