Kondo effect in a single-level quantum dot attached to magnetic leads is studied theoretically by the "poor man's scaling" and non-equilibrium Green function methods. From the scaling equations we derive the Kondo temperature as a function of the model parameters - in particular as a function of the angle between magnetic moments. Transport characteristics, i.e. differential conductance and tunnel magnetoresistance associated with magnetization rotation, were calculated within the non-equilibrium Green function formalism based on the equation of motion method
Abstract. Electron transport through a quantum-dot in the Coulomb blockade regime is modeled by a Ko...
We study the transport behavior induced by a small bias voltage through a quantum dot connected to o...
[[abstract]]Recently, the issue of whether the Kondo problem in quantum dots at large bias is a weak...
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 ...
Nonequilibrium Kondo effect in a quantum dot asymmetrically coupled to two ferromagnetic metallic le...
In this thesis, an overview of non-equilibrium Green's function (NEGF) technique is presented. The ...
The transport properties of a single quantum dot were measured at low temperature in a regime of st...
The electron transport of a system consisting of a Kondo dot and two Luttinger liquid (LL) leads is ...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
23 pagesInternational audienceWe study the non-equilibrium transport properties of fully (exactly) s...
23 pagesInternational audienceWe study the non-equilibrium transport properties of fully (exactly) s...
We present a theoretical study of low-temperature nonequilibrium transport through an interacting qu...
The Kondo effect, wherein a local magnetic moment is screened via interactions with a continuum of q...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
Abstract. Electron transport through a quantum-dot in the Coulomb blockade regime is modeled by a Ko...
We study the transport behavior induced by a small bias voltage through a quantum dot connected to o...
[[abstract]]Recently, the issue of whether the Kondo problem in quantum dots at large bias is a weak...
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 ...
Nonequilibrium Kondo effect in a quantum dot asymmetrically coupled to two ferromagnetic metallic le...
In this thesis, an overview of non-equilibrium Green's function (NEGF) technique is presented. The ...
The transport properties of a single quantum dot were measured at low temperature in a regime of st...
The electron transport of a system consisting of a Kondo dot and two Luttinger liquid (LL) leads is ...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
23 pagesInternational audienceWe study the non-equilibrium transport properties of fully (exactly) s...
23 pagesInternational audienceWe study the non-equilibrium transport properties of fully (exactly) s...
We present a theoretical study of low-temperature nonequilibrium transport through an interacting qu...
The Kondo effect, wherein a local magnetic moment is screened via interactions with a continuum of q...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
Abstract. Electron transport through a quantum-dot in the Coulomb blockade regime is modeled by a Ko...
We study the transport behavior induced by a small bias voltage through a quantum dot connected to o...
[[abstract]]Recently, the issue of whether the Kondo problem in quantum dots at large bias is a weak...