An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian particle in a tilted periodic potential is derived for arbitrary potentials and arbitrary strengths of the thermal noise. Near the critical tilt (threshold of deterministic running solutions) a scaling behavior for weak thermal noise is revealed and various universality classes are identified. In comparison with the bare (potential-free) thermal diffusion, the effective diffusion coefficient in a critically tilted periodic potential may be, in principle, arbitrarily enhanced. For a realistic experimental setup, an enhancement by 14 orders of magnitude is predicted so that thermal diffusion should be observable on a macroscopic scale at room temp...
The paper describes diffusion of particles in a tilted spatially periodic potential under the action...
International audienceWe consider the time-dependent dispersion properties of overdamped tracer part...
Evstigneev M, Zvyagolskaya O, Bleil S, Eichhorn R, Bechinger C, Reimann P. Diffusion of colloidal pa...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
Reimann P, Van den Broeck C, Linke H, Hänggi P, Rubi JM, Perez-Madrid A. Giant acceleration of free ...
Reimann P, Eichhorn R. Weak Disorder Strongly Improves the Selective Enhancement of Diffusion in a T...
The effective diffusion coefficient for the overdamped Brownian motion in a tilted periodic potentia...
The one-dimensional overdamped Brownian motion in a symmetric periodic potential modulated by extern...
Diffusion of overdamped Brownian particles in sawtooth potentials subject to a spatially uniform til...
We characterize the locked-to-running transition of a Brownian particle in a tilted washboard potent...
Particles driven through a periodic potential by an external constant force are known to exhibit a p...
We investigate the dynamics of an overdamped Brownian particle moving in a washboard potential with ...
We investigate the diffusion of a colloidal particle in a tilted periodic potential created by means...
The specific features of Brownian motion in periodic tilted potential (PTP) are analyzed in the low ...
We consider the motion of an underdamped Brownian particle in a tilted periodic potential ...
The paper describes diffusion of particles in a tilted spatially periodic potential under the action...
International audienceWe consider the time-dependent dispersion properties of overdamped tracer part...
Evstigneev M, Zvyagolskaya O, Bleil S, Eichhorn R, Bechinger C, Reimann P. Diffusion of colloidal pa...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
Reimann P, Van den Broeck C, Linke H, Hänggi P, Rubi JM, Perez-Madrid A. Giant acceleration of free ...
Reimann P, Eichhorn R. Weak Disorder Strongly Improves the Selective Enhancement of Diffusion in a T...
The effective diffusion coefficient for the overdamped Brownian motion in a tilted periodic potentia...
The one-dimensional overdamped Brownian motion in a symmetric periodic potential modulated by extern...
Diffusion of overdamped Brownian particles in sawtooth potentials subject to a spatially uniform til...
We characterize the locked-to-running transition of a Brownian particle in a tilted washboard potent...
Particles driven through a periodic potential by an external constant force are known to exhibit a p...
We investigate the dynamics of an overdamped Brownian particle moving in a washboard potential with ...
We investigate the diffusion of a colloidal particle in a tilted periodic potential created by means...
The specific features of Brownian motion in periodic tilted potential (PTP) are analyzed in the low ...
We consider the motion of an underdamped Brownian particle in a tilted periodic potential ...
The paper describes diffusion of particles in a tilted spatially periodic potential under the action...
International audienceWe consider the time-dependent dispersion properties of overdamped tracer part...
Evstigneev M, Zvyagolskaya O, Bleil S, Eichhorn R, Bechinger C, Reimann P. Diffusion of colloidal pa...