We consider a classical overdamped Brownian particle moving in a symmetric periodic potential. We show that a net particle flow can be produced by adiabatically changing two external periodic potentials with a spatial and a temporal phase difference. The classical pumped current is found to be independent of the friction and to vanish both in the limit of low and high temperature. Below a critical temperature, adiabatic pumping appears to be more efficient than transport due to a constant external force
Quantum pumping, in its different forms, is attracting attention from different fields, from fun...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
The directed transport of Brownian particles requires a system with an asymmetry and with non-equili...
We consider the overdamped motion of Brownian particles, interacting via particle exclusion, in an e...
This work deals with the overdamped motion of a particle in a fluctuating one-dimensional periodic p...
Transport of Brownian particles in a finite channel is investigated in the presence of a s...
We present a detailed study of transport and energetics of a Brownian particle moving in a periodic ...
5 pages, 3 figuresInternational audienceQuantum pumping, in its different forms, is attracting atten...
Abstract. We study the diffusive motion of a particle in a periodic adiabatic potential under the in...
The ability to implement adiabatic processes in the mesoscale is of key importance in the study of a...
Diffusion motion of overdamped Brownian particles in a spatially periodic asymmetrical potential an...
We study the transport of an overdamped particle adiabatically driven by an asymmetric potential whi...
We report a theoretical study of an overdamped Brownian particle dynamics in the presence of both a ...
The movement of a Brownian particle in a fluctuating two-state periodic potential is investigated. A...
We study a model of Brownian particles which are pumped with energy by means of a non-linear frictio...
Quantum pumping, in its different forms, is attracting attention from different fields, from fun...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
The directed transport of Brownian particles requires a system with an asymmetry and with non-equili...
We consider the overdamped motion of Brownian particles, interacting via particle exclusion, in an e...
This work deals with the overdamped motion of a particle in a fluctuating one-dimensional periodic p...
Transport of Brownian particles in a finite channel is investigated in the presence of a s...
We present a detailed study of transport and energetics of a Brownian particle moving in a periodic ...
5 pages, 3 figuresInternational audienceQuantum pumping, in its different forms, is attracting atten...
Abstract. We study the diffusive motion of a particle in a periodic adiabatic potential under the in...
The ability to implement adiabatic processes in the mesoscale is of key importance in the study of a...
Diffusion motion of overdamped Brownian particles in a spatially periodic asymmetrical potential an...
We study the transport of an overdamped particle adiabatically driven by an asymmetric potential whi...
We report a theoretical study of an overdamped Brownian particle dynamics in the presence of both a ...
The movement of a Brownian particle in a fluctuating two-state periodic potential is investigated. A...
We study a model of Brownian particles which are pumped with energy by means of a non-linear frictio...
Quantum pumping, in its different forms, is attracting attention from different fields, from fun...
An exact analytical expression for the effective diffusion coefficient of an overdamped Brownian par...
The directed transport of Brownian particles requires a system with an asymmetry and with non-equili...