We theoretically show how the spin orientation of a single magnetic adatom can be controlled by spin polarized electrons in a scanning tunneling microscope configuration. The underlying physical mechanism is spin assisted inelastic tunneling. By changing the direction of the applied current, the orientation of the magnetic adatom can be completely reversed on a time scale that ranges from a few nanoseconds to microseconds, depending on bias and temperature. The changes in the adatom magnetization direction are, in turn, reflected in the tunneling conductance.This work has been financially supported by MEC-Spain (Grants MAT07-67845, Program “Juan de la Cierva,” and CONSOLIDER CSD2007-00010)
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
By considering a linear in momentum but otherwise arbitrary spin-orbit coupling (SOC), we derive a s...
We theoretically show how the spin orientation of a single magnetic adatom can be controlled by spin...
A scanning tunneling microscope can probe the inelastic spin excitations of a single magnetic atom i...
We theoretically investigate spin-polarized transport in a system composed of a ferromagnetic scanni...
We theoretically investigate spin-polarized transport in a system composed of a ferromagnetic scanni...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
A scanning tunneling microscope can probe the inelastic spin excitations of single magnetic atoms in...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Probing absolute values of spin polarization at the nanoscale offers insight into the fundamental me...
I show that recent experiments of inelastic scanning tunneling spectroscopy of single and a few magn...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
By considering a linear in momentum but otherwise arbitrary spin-orbit coupling (SOC), we derive a s...
We theoretically show how the spin orientation of a single magnetic adatom can be controlled by spin...
A scanning tunneling microscope can probe the inelastic spin excitations of a single magnetic atom i...
We theoretically investigate spin-polarized transport in a system composed of a ferromagnetic scanni...
We theoretically investigate spin-polarized transport in a system composed of a ferromagnetic scanni...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
A scanning tunneling microscope can probe the inelastic spin excitations of single magnetic atoms in...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
Probing absolute values of spin polarization at the nanoscale offers insight into the fundamental me...
I show that recent experiments of inelastic scanning tunneling spectroscopy of single and a few magn...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
We describe a model as well as experiments on spin-polarized tunneling with the aid of optical spin ...
By considering a linear in momentum but otherwise arbitrary spin-orbit coupling (SOC), we derive a s...