We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian particles experiencing long-range hydrodynamic interactions. The complex behavior of these fluctuations, the outcome of the collective dynamics of the particles, exhibits many of the features observed in sedimentation experiments. In addition, our model predicts a final relaxation to an anisotropic (hydrodynamic) diffusive state that could be observed in experiments performed over longer time ranges
A new set of coarse-grained equations of motion is proposed to describe concentration and velocity f...
Considering the example of interacting Brownian particles we present a linear response derivation of...
Considering the example of interacting Brownian particles we present a linear response derivation of...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We use a mesoscopic computer simulation method to study the interplay between hydrodynamic and Brown...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
We adapt stochastic rotation dynamics, a mesoscopic computer simulation method, to colloidal suspens...
Diffusive motion of particles plays an important role in many phenomena in surface physics, for exam...
Microstructural changes, that is an important feature for the understanding of the velocity variance...
Considering the example of interacting Brownian particles we present a linear response derivation of...
A new set of coarse-grained equations of motion is proposed to describe concentration and velocity f...
Considering the example of interacting Brownian particles we present a linear response derivation of...
Considering the example of interacting Brownian particles we present a linear response derivation of...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We study non-equilibrium velocity fluctuations in a model for the sedimentation of non-Brownian part...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
We use a mesoscopic computer simulation method to study the interplay between hydrodynamic and Brown...
We apply a hybrid molecular dynamics and mesoscopic simulation technique to study the steady-state s...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
The interplay between hydrodynamic and Brownian fluctuations during steady-state sedimentation of ha...
We adapt stochastic rotation dynamics, a mesoscopic computer simulation method, to colloidal suspens...
Diffusive motion of particles plays an important role in many phenomena in surface physics, for exam...
Microstructural changes, that is an important feature for the understanding of the velocity variance...
Considering the example of interacting Brownian particles we present a linear response derivation of...
A new set of coarse-grained equations of motion is proposed to describe concentration and velocity f...
Considering the example of interacting Brownian particles we present a linear response derivation of...
Considering the example of interacting Brownian particles we present a linear response derivation of...