In recent years, a number of dynamical density functional theories DDFTs have been developed for describing the dynamics of the one-body density of both colloidal and atomic fluids. In the colloidal case, the particles are assumed to have stochastic equations of motion and theories exist for both the case when the particle motion is overdamped and also in the regime where inertial effects are relevant. In this paper, we extend the theory and explore the connections between the microscopic DDFT and the equations of motion from continuum fluid mechanics. In particular, starting from the Kramers equation, which governs the dynamics of the phase space probability distribution function for the system, we show that one may obtain an approximate...
Over the last few decades, classical density-functional theory (DFT) and its dynamic extensions (DDF...
A dynamical density functional theory (DDFT) for translational Brownian dynamics is derived which in...
We study the dynamics of colloidal fluids in both unconfined geometries and when confined by a hard ...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
We introduce a versatile bottom-up derivation of a formal theoretical framework to describe (passive...
The dynamical density functional theory of Marconi and Tarazona (1999 J. Chem. Phys. 110 8032), a th...
Starting from Newton's equations of motion, we derive a dynamical density functional theory (DDFT) a...
An alternative derivation of the dynamical density functional theory for the one-body density profil...
Classical fluid mechanics and, in particular, the general compressible Navier-Stokes-Fourier equation...
By combining methods of kinetic and density functional theory, we present a description of molecular...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
The classical dynamical density functional theory (DDFT) provides an approximate extension of equil...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
We present the exact adiabatic theory for the dynamics of the inhomogeneous density distribution of...
We show that one may view the self-part and the distinct-part of the van Hove dynamic correlation fu...
Over the last few decades, classical density-functional theory (DFT) and its dynamic extensions (DDF...
A dynamical density functional theory (DDFT) for translational Brownian dynamics is derived which in...
We study the dynamics of colloidal fluids in both unconfined geometries and when confined by a hard ...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
We introduce a versatile bottom-up derivation of a formal theoretical framework to describe (passive...
The dynamical density functional theory of Marconi and Tarazona (1999 J. Chem. Phys. 110 8032), a th...
Starting from Newton's equations of motion, we derive a dynamical density functional theory (DDFT) a...
An alternative derivation of the dynamical density functional theory for the one-body density profil...
Classical fluid mechanics and, in particular, the general compressible Navier-Stokes-Fourier equation...
By combining methods of kinetic and density functional theory, we present a description of molecular...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
The classical dynamical density functional theory (DDFT) provides an approximate extension of equil...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
We present the exact adiabatic theory for the dynamics of the inhomogeneous density distribution of...
We show that one may view the self-part and the distinct-part of the van Hove dynamic correlation fu...
Over the last few decades, classical density-functional theory (DFT) and its dynamic extensions (DDF...
A dynamical density functional theory (DDFT) for translational Brownian dynamics is derived which in...
We study the dynamics of colloidal fluids in both unconfined geometries and when confined by a hard ...