We present a new time-dependent density functional approach for studying the relaxational dynamics of an assembly of interacting particles, subject to thermal noise. Starting from the Langevin stochastic equations of motion for the velocities of the particles, we are able by means of an approximate closure to derive a self-consistent deterministic equation for the temporal evolution of the average particle density. The closure is equivalent to assuming that the equal-time two-point correlation function out of equilibrium has the same properties as its equilibrium version. The changes over time of the density depend on the functional derivatives of the grand canonical free-energy functional F[rho] of the system. In order to assess the validi...
Strongly correlated dynamics of fluid particles in a supercooled liquid is discussed on the basis of...
The authors present a study of the nonequilibrium statistical properties of a one dimensional hard-r...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
We present a new time-dependent density functional approach for studying the relaxational dynamics o...
We present a new time-dependent density functional approach to study the relaxational dynamics of an...
The authors consider a system of interacting particles subjected to Langevin inertial dynamics and d...
We propose an alternative theory for the relaxation of density fluctuations in glass-forming fluids....
We discuss the recent attempts to generalize dynamical density functional (DDF) theory to situations...
By combining methods of kinetic and density functional theory, we present a description of molecular...
We discuss the recent attempts to generalize dynamical density functional (DDF) theory to situations...
We describe a test particle approach based on dynamical density functional theory (DDFT) for studyin...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
Strongly correlated dynamics of fluid particles in a supercooled liquid is discussed on the basis of...
The authors present a study of the nonequilibrium statistical properties of a one dimensional hard-r...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
We present a new time-dependent density functional approach for studying the relaxational dynamics o...
We present a new time-dependent density functional approach to study the relaxational dynamics of an...
The authors consider a system of interacting particles subjected to Langevin inertial dynamics and d...
We propose an alternative theory for the relaxation of density fluctuations in glass-forming fluids....
We discuss the recent attempts to generalize dynamical density functional (DDF) theory to situations...
By combining methods of kinetic and density functional theory, we present a description of molecular...
We discuss the recent attempts to generalize dynamical density functional (DDF) theory to situations...
We describe a test particle approach based on dynamical density functional theory (DDFT) for studyin...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
Strongly correlated dynamics of fluid particles in a supercooled liquid is discussed on the basis of...
The authors present a study of the nonequilibrium statistical properties of a one dimensional hard-r...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...