Electron tunneling through a double quantum dot molecule side attached to a quantum wire, in the Kondo regime, is studied. The mean-field finite-U slave-boson formalism is used to obtain the solution of the problem. We investigate the many body molecular Kondo state and its interplay with the inter-dot antiferromagnetic correlation as a function of the parameters of the system
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
Kondo effects in individual atoms, molecular magnets or quantum dotshave received a lot of attention...
In this thesis we study quantum transport in several one-dimensional systems with strong electronic ...
Electron tunneling through a double quantum dot side coupled to a pair of leads is examined in finit...
We investigate the Fano-Kondo interplay in an Aharonov-Bohm ring with an embedded noninteracting qua...
Within the Keldysh non-equilibrium Green function formalism, the electronic transport is theoretical...
With the help of the Green function technique and the equation of motion approach, the electronic tr...
By means of the nonequilibrium Green function and equation of motion method, the electronic transpor...
We analyze the transport properties of a double quantum dot device with both dots coupled to perfect...
The effects of the electron-phonon interaction on the nonequilibrium transport through a single mole...
Quantum interference and electronic correlations are processes relevant for electronic transport in ...
Motivated by recent experiments, in which the Kondo effect has been observed for the first time in a...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
We construct a theoretical model to study the orbital Kondo effect in a parallel double quantum dot ...
In this work, we investigate electronic transport through a double quantum dot junction, where each ...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
Kondo effects in individual atoms, molecular magnets or quantum dotshave received a lot of attention...
In this thesis we study quantum transport in several one-dimensional systems with strong electronic ...
Electron tunneling through a double quantum dot side coupled to a pair of leads is examined in finit...
We investigate the Fano-Kondo interplay in an Aharonov-Bohm ring with an embedded noninteracting qua...
Within the Keldysh non-equilibrium Green function formalism, the electronic transport is theoretical...
With the help of the Green function technique and the equation of motion approach, the electronic tr...
By means of the nonequilibrium Green function and equation of motion method, the electronic transpor...
We analyze the transport properties of a double quantum dot device with both dots coupled to perfect...
The effects of the electron-phonon interaction on the nonequilibrium transport through a single mole...
Quantum interference and electronic correlations are processes relevant for electronic transport in ...
Motivated by recent experiments, in which the Kondo effect has been observed for the first time in a...
Conductance and other physical quantities are calculated in double quantum dots (DQD) connected in s...
We construct a theoretical model to study the orbital Kondo effect in a parallel double quantum dot ...
In this work, we investigate electronic transport through a double quantum dot junction, where each ...
The interplay of strongly correlated electrons is a fundamental issue in condensed-matter physics. A...
Kondo effects in individual atoms, molecular magnets or quantum dotshave received a lot of attention...
In this thesis we study quantum transport in several one-dimensional systems with strong electronic ...