We consider the time-dependent dispersion properties of overdamped tracer particles diffusing in a one-dimensional periodic potential under the influence of an additional constant tilting force F. The system is studied in the region where the force is close to the critical value F c at which the barriers separating neighboring potential wells disappear. We show that, when F crosses the critical value, the shape of the mean-square displacement (MSD) curves is strongly modified. We identify a diffusive regime at intermediate-time scales with an effective diffusion coefficient which is much larger than the late-time diffusion coefficient for F > F c , whereas for F < F c the late-time and intermediate-time diffusive regimes are indistinguishab...
Reimann P, Van den Broeck C, Linke H, Hänggi P, Rubi JM, Perez-Madrid A. Giant acceleration of free ...
Abstract. We study the diffusive motion of a particle in a periodic adiabatic potential under the in...
A variety of phenomena in physics and other fields can be modeled as Brownian motion in a heat bath ...
International audienceWe consider the time-dependent dispersion properties of overdamped tracer part...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
Large-scale, time-asymptotic dispersion properties of diffusing tracers dragged by a uniform drive t...
Diffusion of overdamped Brownian particles in sawtooth potentials subject to a spatially uniform til...
Particles driven through a periodic potential by an external constant force are known to exhibit a p...
A Langevin process describing diffusion in a periodic potential landscape has a time-dependent diffu...
The paper describes diffusion of particles in a tilted spatially periodic potential under the action...
The motion of overdamped particles in a one-dimensional spatially-periodic potential is considered. ...
Low-dimensional, many-body systems are often characterized by ultraslow dynamics. We study a labelle...
We consider the dispersion properties of tracer particles moving in non-equilibrium heterogeneous pe...
We study and characterize a new dynamical regime of underdamped particles in a tilted washboard pote...
We consider a run-and-tumble particle with two velocity states $\pm v_0$ , in an inhomogeneous force...
Reimann P, Van den Broeck C, Linke H, Hänggi P, Rubi JM, Perez-Madrid A. Giant acceleration of free ...
Abstract. We study the diffusive motion of a particle in a periodic adiabatic potential under the in...
A variety of phenomena in physics and other fields can be modeled as Brownian motion in a heat bath ...
International audienceWe consider the time-dependent dispersion properties of overdamped tracer part...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
Large-scale, time-asymptotic dispersion properties of diffusing tracers dragged by a uniform drive t...
Diffusion of overdamped Brownian particles in sawtooth potentials subject to a spatially uniform til...
Particles driven through a periodic potential by an external constant force are known to exhibit a p...
A Langevin process describing diffusion in a periodic potential landscape has a time-dependent diffu...
The paper describes diffusion of particles in a tilted spatially periodic potential under the action...
The motion of overdamped particles in a one-dimensional spatially-periodic potential is considered. ...
Low-dimensional, many-body systems are often characterized by ultraslow dynamics. We study a labelle...
We consider the dispersion properties of tracer particles moving in non-equilibrium heterogeneous pe...
We study and characterize a new dynamical regime of underdamped particles in a tilted washboard pote...
We consider a run-and-tumble particle with two velocity states $\pm v_0$ , in an inhomogeneous force...
Reimann P, Van den Broeck C, Linke H, Hänggi P, Rubi JM, Perez-Madrid A. Giant acceleration of free ...
Abstract. We study the diffusive motion of a particle in a periodic adiabatic potential under the in...
A variety of phenomena in physics and other fields can be modeled as Brownian motion in a heat bath ...