We investigate directed motion in nonadiabatically rocked ratchet systems sustaining few bands below the barrier. Upon restricting the dynamics to the lowest M bands, the total system-plus-bath Hamiltonian is mapped onto a discrete tight-binding model containing all the information both on the intrawell and interwell tunneling motion. A closed form for the current in the incoherent tunneling regime is obtained. In effective single-band ratchets, no current rectification occurs. We apply our theory to describe rectification effects in vortex quantum ratchets devices. Current reversals upon variation of the ac-field amplitude or frequency are predicted
We rigorously investigate the quantum dissipative dynamics of a ratchet system de-scribed by a perio...
We investigate the ratchet current that appears in a kicked Hamiltonian system when the period of th...
We control the current of a single-particle quantum ratchet by designing ramping schemes for experim...
We investigate directed motion in nonadiabatically rocked ratchet systems sustaining few bands below...
In this thesis, ratchet systems operating in the quantum regime are investigated. Ratchet systems, a...
We have measured a quantum ratchet effect for vortices moving in a quasi-one-dimensional Josephson j...
We demonstrate that the tunnel oscillations of a biased double quantum dot can be employed as drivin...
We investigate the quantum ratchet effect under the influence of weak dissipation which we treat wit...
Rectification phenomena in two specific mesoscopic systems are reviewed. The phenomenon is called ra...
Reimann P, Grifoni M, Hänggi P. Quantum ratchets. Physical Review Letters. 1997;79(1):10-13.We inves...
In a previous work, we described transport in a classical, externally driven, overdamped ratchet. A ...
Ratchets are devices that are able to rectify an otherwise oscillatory behavior by exploiting an asy...
We experimentally investigate the phenomenon of a quantum ratchet created by exposing a Bose-Einstei...
Quantum-resonance ratchets have been realized over the last ten years for the production of directed...
Ratchets are devices that are able to rectify an otherwise oscillatory behavior by exploiting an asy...
We rigorously investigate the quantum dissipative dynamics of a ratchet system de-scribed by a perio...
We investigate the ratchet current that appears in a kicked Hamiltonian system when the period of th...
We control the current of a single-particle quantum ratchet by designing ramping schemes for experim...
We investigate directed motion in nonadiabatically rocked ratchet systems sustaining few bands below...
In this thesis, ratchet systems operating in the quantum regime are investigated. Ratchet systems, a...
We have measured a quantum ratchet effect for vortices moving in a quasi-one-dimensional Josephson j...
We demonstrate that the tunnel oscillations of a biased double quantum dot can be employed as drivin...
We investigate the quantum ratchet effect under the influence of weak dissipation which we treat wit...
Rectification phenomena in two specific mesoscopic systems are reviewed. The phenomenon is called ra...
Reimann P, Grifoni M, Hänggi P. Quantum ratchets. Physical Review Letters. 1997;79(1):10-13.We inves...
In a previous work, we described transport in a classical, externally driven, overdamped ratchet. A ...
Ratchets are devices that are able to rectify an otherwise oscillatory behavior by exploiting an asy...
We experimentally investigate the phenomenon of a quantum ratchet created by exposing a Bose-Einstei...
Quantum-resonance ratchets have been realized over the last ten years for the production of directed...
Ratchets are devices that are able to rectify an otherwise oscillatory behavior by exploiting an asy...
We rigorously investigate the quantum dissipative dynamics of a ratchet system de-scribed by a perio...
We investigate the ratchet current that appears in a kicked Hamiltonian system when the period of th...
We control the current of a single-particle quantum ratchet by designing ramping schemes for experim...