A numerical renormalization-group study of the conductance through a quantum wire containing noninteracting electrons side-coupled to a quantum dot is reported. The temperature and the dot-energy dependence of the conductance are examined in the light of a recently derived linear mapping between the temperature-dependent conductance and the universal function describing the conductance for the symmetric Anderson model of a quantum wire with an embedded quantum dot. Two conduction paths, one traversing the wire, the other a bypass through the quantum dot, are identified. A gate potential applied to the quantum wire is shown to control the current through the bypass. When the potential favors transport through the wire, the conductance in the...
We have studied quantum wires using the Green’s function technique within density-functional theory,...
We study the thermopower, thermal conductance, electric conductance and the thermoelectric figure of...
We study the transport behavior induced by a small bias voltage through a quantum dot connected to o...
A numerical renormalization-group study of the conductance through a quantum wire containing noninte...
We discuss the thermal dependence of the zero-bias electrical conductance for a quantum dot embedded...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential ...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential ...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential ...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We have studied quantum wires using the Green’s function technique within density-functional theory,...
We study the thermopower, thermal conductance, electric conductance and the thermoelectric figure of...
We study the transport behavior induced by a small bias voltage through a quantum dot connected to o...
A numerical renormalization-group study of the conductance through a quantum wire containing noninte...
We discuss the thermal dependence of the zero-bias electrical conductance for a quantum dot embedded...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential ...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential ...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential ...
We show that the conductance of a quantum wire side-coupled to a quantum dot, with a gate potential...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We have studied quantum wires using the Green’s function technique within density-functional theory,...
We study the thermopower, thermal conductance, electric conductance and the thermoelectric figure of...
We study the transport behavior induced by a small bias voltage through a quantum dot connected to o...