When parameters are varied periodically, charge can be pumped through a mesoscopic conductor without applied bias. Here, we consider the inverse effect in which a transport current drives a periodic variation of an adiabatic degree of freedom. This provides a general operating principle for adiabatic quantum motors which we discuss here in general terms. We relate the work performed per cycle on the motor degree of freedom to characteristics of the underlying quantum pump and discuss the motors’ efficiency. Quantum motors based on chaotic quantum dots operate solely due to quantum interference, and motors based on Thouless pumps have ideal efficiency
Nonadiabatic charge pumping through a single-level quantum dot with periodically modulated parameter...
During the last decades, quantum dots within the Coulomb blockade regime of transport have been prop...
We propose a new type of quantum pump made out of graphene, adiabatically driven by oscillating volt...
When parameters are varied periodically, charge can be pumped through a mesoscopic conductor without...
When parameters are varied periodically, charge can be pumped through a mesoscopic conductor without...
We present a field-theoretic treatment of an adiabatic quantum motor. We explicitly discuss a motor ...
Item does not contain fulltextWe propose a design for realizing quantum charge pump based on a recen...
In a mesoscopic system, under zero bias voltage, a finite charge is transferred by quantum adiabatic...
We present a field theoretic treatment of an adiabatic quantum motor. We explicitly discuss a motor ...
Current induced forces are not only related with the discrete nature of electrons but also with its ...
We study the relation between quantum pumping of charge and the work exchanged with the driving pote...
Different proposals for adiabatic quantum motors (AQMs) driven by DC currents have recently attracte...
Summary. Electronic transport in mesoscopic systems has been intensively studied for more the last t...
Physicists and engineers from all around the world are constantly thinking of ways to improve the pe...
Pumping of electrons through nanoscale devices is one of the fascinating achievements in the field o...
Nonadiabatic charge pumping through a single-level quantum dot with periodically modulated parameter...
During the last decades, quantum dots within the Coulomb blockade regime of transport have been prop...
We propose a new type of quantum pump made out of graphene, adiabatically driven by oscillating volt...
When parameters are varied periodically, charge can be pumped through a mesoscopic conductor without...
When parameters are varied periodically, charge can be pumped through a mesoscopic conductor without...
We present a field-theoretic treatment of an adiabatic quantum motor. We explicitly discuss a motor ...
Item does not contain fulltextWe propose a design for realizing quantum charge pump based on a recen...
In a mesoscopic system, under zero bias voltage, a finite charge is transferred by quantum adiabatic...
We present a field theoretic treatment of an adiabatic quantum motor. We explicitly discuss a motor ...
Current induced forces are not only related with the discrete nature of electrons but also with its ...
We study the relation between quantum pumping of charge and the work exchanged with the driving pote...
Different proposals for adiabatic quantum motors (AQMs) driven by DC currents have recently attracte...
Summary. Electronic transport in mesoscopic systems has been intensively studied for more the last t...
Physicists and engineers from all around the world are constantly thinking of ways to improve the pe...
Pumping of electrons through nanoscale devices is one of the fascinating achievements in the field o...
Nonadiabatic charge pumping through a single-level quantum dot with periodically modulated parameter...
During the last decades, quantum dots within the Coulomb blockade regime of transport have been prop...
We propose a new type of quantum pump made out of graphene, adiabatically driven by oscillating volt...