We study the gate voltage dependence of the linear conductance through a quantum dot coupled to one-dimensional leads. For interacting dot electrons but noninteracting leads Kondo physics implies broad plateaulike resonances. In the opposite case Luttinger-liquid behavior leads to sharp resonances. In the presence of Kondo as well as Luttinger-liquid physics and for experimentally relevant parameters, we find a line shape that resembles the one of the Kondo case
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
Linear and non-linear conductance of quantum dots attached to magnetic leads is considered theoretic...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
The electron transport of a system consisting of a Kondo dot and two Luttinger liquid (LL) leads is ...
We investigate the transport properties of a (small) quantum dot connected to Fermi liquid leads wi...
We study the low-temperature differential conductance and density of states of a quantum dot coupled...
We study the nonequlibrium transport through a quantum dot weakly coupled to Luttinger liquids (LL)....
We study the influence of many-body interactions on the transport properties in a two-site charge Ko...
We study the influence of many-body interactions on the transport properties in a two-site charge Ko...
The phase-sensitive Kondo effect in the transmission through a quantum dot is investigated. It is sh...
We study the case of which a non-interacting quantum dot is connected to two one-dimensional leads, ...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
The transport properties of a single quantum dot were measured at low temperature in a regime of st...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
Linear and non-linear conductance of quantum dots attached to magnetic leads is considered theoretic...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
The electron transport of a system consisting of a Kondo dot and two Luttinger liquid (LL) leads is ...
We investigate the transport properties of a (small) quantum dot connected to Fermi liquid leads wi...
We study the low-temperature differential conductance and density of states of a quantum dot coupled...
We study the nonequlibrium transport through a quantum dot weakly coupled to Luttinger liquids (LL)....
We study the influence of many-body interactions on the transport properties in a two-site charge Ko...
We study the influence of many-body interactions on the transport properties in a two-site charge Ko...
The phase-sensitive Kondo effect in the transmission through a quantum dot is investigated. It is sh...
We study the case of which a non-interacting quantum dot is connected to two one-dimensional leads, ...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
The transport properties of a single quantum dot were measured at low temperature in a regime of st...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...
Linear and non-linear conductance of quantum dots attached to magnetic leads is considered theoretic...
We describe the Kondo resonance in quantum dots employing the atomic model. We calculate approximate...