Over the last few decades, classical density-functional theory (DFT) and its dynamic extensions (DDFTs) have become powerful tools in the study of colloidal fluids. Recently, previous DDFTs for spherically-symmetric particles have been generalised to take into account both inertia and hydrodynamic interactions, two effects which strongly influence non-equilibrium properties. The present work further generalises this framework to systems of anisotropic particles. Starting from the Liouville equation and utilising Zwanzig’s projection-operator techniques, we derive the kinetic equation for the Brownian particle distribution function, and by averaging over all but one particle, a DDFT equation is obtained. Whilst this equation has some similar...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
A dynamical density functional theory (DDFT) for translational Brownian dynamics is derived which in...
Starting from the many-particle Smoluchowski equation, we derive a dynamical density functional theo...
A dynamical density functional theory (DDFT) for translational Brownian dynamics is derived which in...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
Starting from the Kramers equation for the phase-space dynamics of the N-body probability distributi...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
We study the dynamics of a colloidal fluid in the full position-momentum phase space, including hydr...
A dynamical density functional theory (DDFT) for translational Brownian dynamics is derived which in...
Starting from the many-particle Smoluchowski equation, we derive a dynamical density functional theo...
A dynamical density functional theory (DDFT) for translational Brownian dynamics is derived which in...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
We study the dynamics of a colloidal fluid including inertia and hydrodynamic interactions, two effe...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...
We consider the properties of a one-dimensional fluid of Brownian inertial hard-core particles, whos...