We consider a kinetic model of two species of particles interacting with a reservoir at fixed temperature, described by two coupled Vlasov-Fokker-Planck equations. We prove that in the diffusive limit the evolution is described by a macroscopic equation in the form of the gradient flux of the macroscopic free energy functional. Moreover, we study the sharp interface limit and find by formal Hilbert expansions that the interface motion is given in terms of a quasi-stationary problem for the chemical potentials. The velocity of the interface is the sum of two contributions: the velocity of the Mullins-Sekerka motion for the difference of the chemical potentials and the velocity of a Hele-Shaw motion for a linear combination of the two potenti...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
Interface dynamics describes the evolution of systems after phase segregation. In a quenching exper...
We consider a kinetic model for a system of two species of particles interacting through a long rang...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We consider a kinetic model of two species of particles interacting with a reservoir at fixed temper...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
We study a kinetic model for a system of two species of particles interacting via a repulsive long r...
Interface dynamics describes the evolution of systems after phase segregation. In a quenching exper...
We consider a kinetic model for a system of two species of particles interacting through a long rang...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...
We derive hydrodynamic equations describing the evolution of a binary fluid segregated into two regi...