We describe linear and nonlinear transport across a strongly interacting single impurity Anderson model quantum dot with intermediate coupling to the leads, i.e. with tunnel coupling Γ of the order of the thermal energy kBT. The coupling is large enough that sequential tunneling processes (second order in the tunneling Hamiltonian) alone do not suffice to properly describe the transport characteristics. Upon applying a density matrix approach, the current is expressed in terms of rates obtained by considering a very small class of diagrams which dress the sequential tunneling processes by charge fluctuations. We call this the “dressed second order” (DSO) a...
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We describe linear and nonlinear transport across a strongly interacting single impurity Anderson mo...
We describe linear and nonlinear transport across a strongly interacting single impurity Anderson mo...
We describe linear and nonlinear transport across a strongly interacting single impurity Anderson mo...
The topic of this work is the theoretical description of the tunneling current across an interacting...
The topic of this work is the theoretical description of the tunneling current across an interacting...
The topic of this work is the theoretical description of the tunneling current across an interacting...
The topic of this work is the theoretical description of the tunneling current across an interacting...
International audienceThe paper deals with the nonequilibrium two-lead Anderson model, considered as...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We study the low-temperature physics arising in models of a strongly correlated, tunnel-coupled doub...
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We describe linear and nonlinear transport across a strongly interacting single impurity Anderson mo...
We describe linear and nonlinear transport across a strongly interacting single impurity Anderson mo...
We describe linear and nonlinear transport across a strongly interacting single impurity Anderson mo...
The topic of this work is the theoretical description of the tunneling current across an interacting...
The topic of this work is the theoretical description of the tunneling current across an interacting...
The topic of this work is the theoretical description of the tunneling current across an interacting...
The topic of this work is the theoretical description of the tunneling current across an interacting...
International audienceThe paper deals with the nonequilibrium two-lead Anderson model, considered as...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...
We study the low-temperature physics arising in models of a strongly correlated, tunnel-coupled doub...
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...
We calculate the conductance through a quantum dot weakly coupled to metallic leads, modeled by the ...
We calculate the conductance through a single quantum dot coupled to metallic leads, modeled by the ...