We consider the overdamped motion of Brownian particles, interacting via particle exclusion, in an external potential that varies with time and space. We show that periodic potentials that maintain specific position-dependent phase relations generate time-averaged directed current of particles. We obtain analytic results for a lattice version of the model using a recently developed perturbative approach. Many interesting features like particle-hole symmetry, current reversal with changing density, and system size dependence of current are obtained. We propose possible experiments to test our predictions
We consider the Brownian motion of a colloidal particle in a symmetric, periodic potential, whose po...
We study large deviations for the current of one-dimensional stochastic particle systems with period...
The static structure factor and diffusion mechanism of $N$ interacting Brownian particles immersed i...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We present and compare different versions of a simple particle pump-model that describes average dir...
This work deals with the overdamped motion of a particle in a fluctuating one-dimensional periodic p...
A class of exclusion processes in which particles perform history-dependent random walks is introdu...
We consider a classical overdamped Brownian particle moving in a symmetric periodic potential. We sh...
The diffusion properties of overdamped particles moving in spatially symmetrical periodic potentials...
Non-equilibrium transport processes in confined geometries are of fundamental impor- tance in nature...
Open Access.We study a symmetric exclusion process in which the hopping rates at two chosen adjacent...
We study the large-time behavior of Brownian particles moving through a viscous medium in a confined...
We analyze the classical problem of the stochastic dynamics of a particle confined in a periodic po...
We consider the single-file motion of colloidal particles interacting via short-range repulsion and ...
We report a theoretical study of an overdamped Brownian particle dynamics in the presence of both a ...
We consider the Brownian motion of a colloidal particle in a symmetric, periodic potential, whose po...
We study large deviations for the current of one-dimensional stochastic particle systems with period...
The static structure factor and diffusion mechanism of $N$ interacting Brownian particles immersed i...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
We present and compare different versions of a simple particle pump-model that describes average dir...
This work deals with the overdamped motion of a particle in a fluctuating one-dimensional periodic p...
A class of exclusion processes in which particles perform history-dependent random walks is introdu...
We consider a classical overdamped Brownian particle moving in a symmetric periodic potential. We sh...
The diffusion properties of overdamped particles moving in spatially symmetrical periodic potentials...
Non-equilibrium transport processes in confined geometries are of fundamental impor- tance in nature...
Open Access.We study a symmetric exclusion process in which the hopping rates at two chosen adjacent...
We study the large-time behavior of Brownian particles moving through a viscous medium in a confined...
We analyze the classical problem of the stochastic dynamics of a particle confined in a periodic po...
We consider the single-file motion of colloidal particles interacting via short-range repulsion and ...
We report a theoretical study of an overdamped Brownian particle dynamics in the presence of both a ...
We consider the Brownian motion of a colloidal particle in a symmetric, periodic potential, whose po...
We study large deviations for the current of one-dimensional stochastic particle systems with period...
The static structure factor and diffusion mechanism of $N$ interacting Brownian particles immersed i...