We study the problem of phase separation in systems with a positive definite order parameter, and in particular, in systems with absorbing states. Owing to the presence of a single minimum in the free energy driving the relaxation kinetics, there are some basic properties differing from standard phase separation. We study this class of systems analytically and numerically; in particular we determine the phase diagram, the growth laws in one and two dimensions and the presence of scale invariance. Some applications are also discussed
We investigate the critical behavior of systems exhibiting a continuous absorbing phase transition i...
We study the dynamics of phase separation in multicomponent mixtures through Monte Carlo simulations...
In the framework of continuum thermodynamics a new approach to phase transition and separation pheno...
Abstract. – We study the problem of phase separation in systems with a positive definite order param...
A general criterion for the existence of phase separation in driven density-conserving one-dimension...
A class of interacting particle systems modelling driven diffusive systems with short range interact...
Systems with absorbing (trapped) states may exhibit a nonequilibrium phase transition from a noise-f...
The dynamics of phase separation in binary systems containing surfactants is investigated by means o...
A new technique, combining the global energy and entropy balance equations with the local stability ...
We generalize the necessary and sufficient conditions for finite systems to exhibit van der Waals-ty...
The dynamics of phase separation in two-dimensional binary mixtures diluted by surfactants is studie...
We describe some of the recent results obtained for models with absorbing states. First, we present ...
A new systematic theory for the dynamics of phase separation of quenched binary systems in a metast...
We study the steady state resulting from instabilities in crystals driven through a dissipative medi...
We present a new model for the entire process of phase-separation that combines steady-state homogen...
We investigate the critical behavior of systems exhibiting a continuous absorbing phase transition i...
We study the dynamics of phase separation in multicomponent mixtures through Monte Carlo simulations...
In the framework of continuum thermodynamics a new approach to phase transition and separation pheno...
Abstract. – We study the problem of phase separation in systems with a positive definite order param...
A general criterion for the existence of phase separation in driven density-conserving one-dimension...
A class of interacting particle systems modelling driven diffusive systems with short range interact...
Systems with absorbing (trapped) states may exhibit a nonequilibrium phase transition from a noise-f...
The dynamics of phase separation in binary systems containing surfactants is investigated by means o...
A new technique, combining the global energy and entropy balance equations with the local stability ...
We generalize the necessary and sufficient conditions for finite systems to exhibit van der Waals-ty...
The dynamics of phase separation in two-dimensional binary mixtures diluted by surfactants is studie...
We describe some of the recent results obtained for models with absorbing states. First, we present ...
A new systematic theory for the dynamics of phase separation of quenched binary systems in a metast...
We study the steady state resulting from instabilities in crystals driven through a dissipative medi...
We present a new model for the entire process of phase-separation that combines steady-state homogen...
We investigate the critical behavior of systems exhibiting a continuous absorbing phase transition i...
We study the dynamics of phase separation in multicomponent mixtures through Monte Carlo simulations...
In the framework of continuum thermodynamics a new approach to phase transition and separation pheno...