The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization directions is studied combining poor man scaling and Wilson's numerical renormalization group methods. We show that polarized electrodes will lead in general to a splitting of the Kondo resonance in the quantum dot density of states except for a small range of angles close to the antiparallel case. We also show that an external magnetic field is able to compensate this splitting and restore the unitary limit. Finally, we study the electronic transport through the device in various limiting cases
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
Based on the infinite-U Anderson model, Keldysh Green Function was used to calculate the Kondo split...
The Kondo effect, wherein a local magnetic moment is screened via interactions with a continuum of q...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
Linear and non-linear conductance of quantum dots attached to magnetic leads is considered theoretic...
The poor man's scaling technique is applied to the problem of electronic transport through a single ...
We present measurements on the Kondo effect in a small quantum dot connected strongly to one lead an...
We present measurements on the Kondo effect in a small quantum dot connected strongly to one lead an...
Spin related effects in electronic transport through quantum dots, coupled via tunneling barriers to...
We present a theoretical study of low-temperature nonequilibrium transport through an interacting qu...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
The phase-sensitive Kondo effect in the transmission through a quantum dot is investigated. It is sh...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
Based on the infinite-U Anderson model, Keldysh Green Function was used to calculate the Kondo split...
The Kondo effect, wherein a local magnetic moment is screened via interactions with a continuum of q...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
The Kondo effect in quantum dots attached to ferromagnetic leads with general polarization direction...
Linear and non-linear conductance of quantum dots attached to magnetic leads is considered theoretic...
The poor man's scaling technique is applied to the problem of electronic transport through a single ...
We present measurements on the Kondo effect in a small quantum dot connected strongly to one lead an...
We present measurements on the Kondo effect in a small quantum dot connected strongly to one lead an...
Spin related effects in electronic transport through quantum dots, coupled via tunneling barriers to...
We present a theoretical study of low-temperature nonequilibrium transport through an interacting qu...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
The phase-sensitive Kondo effect in the transmission through a quantum dot is investigated. It is sh...
We investigate quantum dots in clean single-wall carbon nanotubes with ferromagnetic PdNi-leads in t...
Based on the infinite-U Anderson model, Keldysh Green Function was used to calculate the Kondo split...
The Kondo effect, wherein a local magnetic moment is screened via interactions with a continuum of q...