We present a very simple model for realizing directed transport with cold atoms in a pair of periodically flashed optical lattices. The origin of this ratchet effect is explained and its robustness demonstrated under imperfections typical of cold atom experiments. We conclude that our model offers a clear-cut way to implement directed transport in an atom optical experiment
We describe the classical two dimensinal nonlinear dynamics of cold atoms in far-o#-resonant donut ...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
The field of quantum simulation aims at emulating complex quantum systems on platforms that are easi...
SUMMARY We present a very simple model for realizing directed transport with cold atoms in a pair ...
Ratchets are devices that operate away from thermal equilibrium and can rec-tify zero-mean perturbat...
Using a new type of chaotic ratchet generated by pulsed standing waves of light, we propose a mechan...
We present an analytical study of the response of cold atoms in an optical lattice to a weak time- a...
Cold atoms in optical lattices have emerged as an ideal system to investigate the ratchet effect, as...
This paper discusses two retrodictions of the theory of ratchet universality which explain previous ...
We consider a particle in a spatial symmetric/asymmetric potential driven by time periodic bichromat...
This thesis describes the development and presents the results of a series of experiments on the rat...
Low-order quantum resonances manifested by directed currents have been realized with cold atoms. Her...
We theoretically study the nonlinear dynamics of atoms cooled and trapped in a dissipative optical l...
Recently, cesium atoms in optical lattices subjected to cycles of unequally spaced pulses have been ...
We propose a mechanism for a velocity-selective device which would allow packets of cold atoms trave...
We describe the classical two dimensinal nonlinear dynamics of cold atoms in far-o#-resonant donut ...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
The field of quantum simulation aims at emulating complex quantum systems on platforms that are easi...
SUMMARY We present a very simple model for realizing directed transport with cold atoms in a pair ...
Ratchets are devices that operate away from thermal equilibrium and can rec-tify zero-mean perturbat...
Using a new type of chaotic ratchet generated by pulsed standing waves of light, we propose a mechan...
We present an analytical study of the response of cold atoms in an optical lattice to a weak time- a...
Cold atoms in optical lattices have emerged as an ideal system to investigate the ratchet effect, as...
This paper discusses two retrodictions of the theory of ratchet universality which explain previous ...
We consider a particle in a spatial symmetric/asymmetric potential driven by time periodic bichromat...
This thesis describes the development and presents the results of a series of experiments on the rat...
Low-order quantum resonances manifested by directed currents have been realized with cold atoms. Her...
We theoretically study the nonlinear dynamics of atoms cooled and trapped in a dissipative optical l...
Recently, cesium atoms in optical lattices subjected to cycles of unequally spaced pulses have been ...
We propose a mechanism for a velocity-selective device which would allow packets of cold atoms trave...
We describe the classical two dimensinal nonlinear dynamics of cold atoms in far-o#-resonant donut ...
We analyze the dynamics of Brownian ratchets in a confined environment. The motion of the particles ...
The field of quantum simulation aims at emulating complex quantum systems on platforms that are easi...