A nanoelectromechanical device based on magnetic exchange forces and electron spin flips induced by a weak external magnetic field is suggested. It is shown that this device can operate as a new type of single-electron "shuttle" in the Coulomb blockade regime of electron transport
The single-electron transistor is the fastest and most sensitive electrometer available today1,2. Si...
We study transport of spin-polarized electrons through a magnetic single-electron transistor (SET) i...
We show that single-electron "shuttling" of electrons in a magnetic nanoelectromechanical single-ele...
A nanoelectromechanical device based on magnetic exchange forces and electron spin flips induced by ...
Exchange forces on the movable dot (“shuttle”) in a magnetic shuttle device depend on the parity of ...
A single-electron tunneling (SET) device with a nanoscale central island that can move with respect ...
We show that self sustained mechanical vibrations in a model magnetic shuttle device can be driven b...
We study the electrical transport of a harmonically bound, single-molecule C₆₀ shuttle operating in ...
A single-electron tunneling (SET) device with a nanoscale central island that can move with respect ...
Coupling between electronic and mechanical degrees of freedom caused by electronic spin, rather than...
Small metal particles embedded in a material subject to an external electric field can contribute to...
A theory of a thermally induced single-electron ‘shuttling’ instability in a magnetic nano-mechanica...
The coupling between mechanical deformations and electronic charge transport in nanostructuresand in...
We study a single-electron transistor (SET) based upon a II–VI semiconductor quantum dot doped with ...
We present a theory of the nanoelectromechanical coupling in a magnetic nanoelectromechanical single...
The single-electron transistor is the fastest and most sensitive electrometer available today1,2. Si...
We study transport of spin-polarized electrons through a magnetic single-electron transistor (SET) i...
We show that single-electron "shuttling" of electrons in a magnetic nanoelectromechanical single-ele...
A nanoelectromechanical device based on magnetic exchange forces and electron spin flips induced by ...
Exchange forces on the movable dot (“shuttle”) in a magnetic shuttle device depend on the parity of ...
A single-electron tunneling (SET) device with a nanoscale central island that can move with respect ...
We show that self sustained mechanical vibrations in a model magnetic shuttle device can be driven b...
We study the electrical transport of a harmonically bound, single-molecule C₆₀ shuttle operating in ...
A single-electron tunneling (SET) device with a nanoscale central island that can move with respect ...
Coupling between electronic and mechanical degrees of freedom caused by electronic spin, rather than...
Small metal particles embedded in a material subject to an external electric field can contribute to...
A theory of a thermally induced single-electron ‘shuttling’ instability in a magnetic nano-mechanica...
The coupling between mechanical deformations and electronic charge transport in nanostructuresand in...
We study a single-electron transistor (SET) based upon a II–VI semiconductor quantum dot doped with ...
We present a theory of the nanoelectromechanical coupling in a magnetic nanoelectromechanical single...
The single-electron transistor is the fastest and most sensitive electrometer available today1,2. Si...
We study transport of spin-polarized electrons through a magnetic single-electron transistor (SET) i...
We show that single-electron "shuttling" of electrons in a magnetic nanoelectromechanical single-ele...