A class of interacting particle systems modelling driven diffusive systems with short range interactions has been suggested to exhibit macroscopic phase separation in d = 1 dimensions. Unlike all previously studied models exhibiting similar phenomena, there the phase separated state is fluctuating in the bulk of the macroscopic domains. We discuss a recently introduced sufficient criterion for the existence of such phase separation and point out some assumptions which require rigorous proof. We also introduce a new model for strong phase separation into essentially nonfluctuation states. We informally describe its exact invariant measure
We study the problem of phase separation in systems with a positive definite order parameter, and in...
We examine critically the issue of phase transitions in one-dimensional systems with short range in...
This work investigates classical interacting particle systems for which the stochastic time evolutio...
A general criterion for the existence of phase separation in driven density-conserving one-dimension...
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...
We study the steady state resulting from instabilities in crystals driven through a dissipative medi...
We discuss the stochastic trajectories of single molecules in a phase-separated liquid, when a dense...
The emergence of patterns and phase separation in many-body systems far from thermal equilibrium is ...
This paper deals with a dynamics (Glauber-Kawasaki) of a d-dimensional (d = 2,3) spin system, with a...
The effect of quenched disorder in the one-dimensional asymmetric exclusion process is reviewed. Bot...
AbstractThis paper deals with a dynamics (Glauber-Kawasaki) of a d-dimensional (d = 2,3) spin system...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
We study the current large deviations for a lattice model of interacting active particles displaying...
Using an analytically tractable lattice model for reaction-diffusion processes of hard-core particle...
We study the problem of phase separation in systems with a positive definite order parameter, and in...
We examine critically the issue of phase transitions in one-dimensional systems with short range in...
This work investigates classical interacting particle systems for which the stochastic time evolutio...
A general criterion for the existence of phase separation in driven density-conserving one-dimension...
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...
We study the steady state resulting from instabilities in crystals driven through a dissipative medi...
We discuss the stochastic trajectories of single molecules in a phase-separated liquid, when a dense...
The emergence of patterns and phase separation in many-body systems far from thermal equilibrium is ...
This paper deals with a dynamics (Glauber-Kawasaki) of a d-dimensional (d = 2,3) spin system, with a...
The effect of quenched disorder in the one-dimensional asymmetric exclusion process is reviewed. Bot...
AbstractThis paper deals with a dynamics (Glauber-Kawasaki) of a d-dimensional (d = 2,3) spin system...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
We study the current large deviations for a lattice model of interacting active particles displaying...
Using an analytically tractable lattice model for reaction-diffusion processes of hard-core particle...
We study the problem of phase separation in systems with a positive definite order parameter, and in...
We examine critically the issue of phase transitions in one-dimensional systems with short range in...
This work investigates classical interacting particle systems for which the stochastic time evolutio...