We obtain the effective action of tunnel-coupled quantum dots, by modeling the system as a Luttinger liquid with multiple barriers. For a double dot system, we find that the resonance conditions for perfect conductance form a hexagon in the plane of the two gate voltages controlling the density of electrons in each dot. We also explicitly obtain the functional dependence of the interaction energy and peak splitting on the gate voltage controlling tunneling between the dots and their charging energies. Our results are in good agreement with recent experimental results, from which we obtain the Luttinger interaction parameter K = 0.74
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
We study the nonequlibrium transport through a quantum dot weakly coupled to Luttinger liquids (LL)....
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...
We obtain the effective action of tunnel-coupled quantum dots, by modeling the system as a Luttinger...
We study the case of which a non-interacting quantum dot is connected to two one-dimensional leads, ...
We investigate the linear DC transport properties of one-dimensional quantum dots that are immersed ...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
The conductance of two interacting dots connected to leads is studied. The configuration is such tha...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
We calculate the charge susceptibility and the linear and differential conductances of a double quan...
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...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
We study the nonequlibrium transport through a quantum dot weakly coupled to Luttinger liquids (LL)....
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...
We obtain the effective action of tunnel-coupled quantum dots, by modeling the system as a Luttinger...
We study the case of which a non-interacting quantum dot is connected to two one-dimensional leads, ...
We investigate the linear DC transport properties of one-dimensional quantum dots that are immersed ...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
The conductance of two interacting dots connected to leads is studied. The configuration is such tha...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
International audienceWe calculate the charge susceptibility and the linear and differential conduct...
We calculate the charge susceptibility and the linear and differential conductances of a double quan...
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...
A theoretical approach to a problem of electron transport through double quantum dot systems based o...
We study the nonequlibrium transport through a quantum dot weakly coupled to Luttinger liquids (LL)....
The coupled double quantum dot system is modeled by a two impurity Anderson-type Hamiltonian and int...