We show that the observed evolution of the transmission phase through multielectron quantum dots with more than approximately ten electrons, which shows a universal (i.e., independent of N) as yet unexplained behavior, is consistent with an electrostatic model, where electron-electron interaction is described by a mean-field approach. Moreover, we perform exact calculations for an open one-dimensional quantum dot and show that carrier correlations may give rise to a nonuniversal (i.e., N-dependent) behavior of the transmission phase, ensuing from Fano resonances, which is consistent with experiments with a few (N < 10) carriers. Our results suggest that in the universal regime, the coherent transmission takes place through a single level, w...
Quantum dots are nanoscopic systems, where carriers are confined in all three spatial directions. Su...
We study acoustic-phonon-induced relaxation of charge excitations in single and tunnel-coupled quant...
4 pages, 3 figuresInternational audienceWe investigate scattering through chaotic ballistic quantum ...
We show that the observed evolution of the transmission phase through multielectron quantum dots wit...
We investigate scattering through chaotic ballistic quantum dots in the Coulomb-blockade regime. Foc...
We use a novel approach, allowing the inclusion of particle-particle correlation in the calculation ...
We study the effect of Coulomb interaction on the few-electron dynamics in coupled semiconductor qua...
This thesis contributes to the field of transport through quantum dots. These devices allow for a co...
We study correlated two-level quantum dots, coupled in effective 1-channel fashion to metallic leads...
We use a configuration-interaction approach and the Fermi golden rule to investigate electron-phonon...
We study theoretically the entanglement created in a scattering between an electron, incoming from a...
We study interaction effects in quantum dots coupled to perfectly conducting leads via barriers of a...
In this paper, using the particle-number-resolved master equation, the properties of full counting s...
The few-particle state of carriers confined in a quantum dot is controlled by the balance between th...
10 pags., 3 figs. -- Advanced many-body and statistical methods in mesoscopic systems 27 June to 2 J...
Quantum dots are nanoscopic systems, where carriers are confined in all three spatial directions. Su...
We study acoustic-phonon-induced relaxation of charge excitations in single and tunnel-coupled quant...
4 pages, 3 figuresInternational audienceWe investigate scattering through chaotic ballistic quantum ...
We show that the observed evolution of the transmission phase through multielectron quantum dots wit...
We investigate scattering through chaotic ballistic quantum dots in the Coulomb-blockade regime. Foc...
We use a novel approach, allowing the inclusion of particle-particle correlation in the calculation ...
We study the effect of Coulomb interaction on the few-electron dynamics in coupled semiconductor qua...
This thesis contributes to the field of transport through quantum dots. These devices allow for a co...
We study correlated two-level quantum dots, coupled in effective 1-channel fashion to metallic leads...
We use a configuration-interaction approach and the Fermi golden rule to investigate electron-phonon...
We study theoretically the entanglement created in a scattering between an electron, incoming from a...
We study interaction effects in quantum dots coupled to perfectly conducting leads via barriers of a...
In this paper, using the particle-number-resolved master equation, the properties of full counting s...
The few-particle state of carriers confined in a quantum dot is controlled by the balance between th...
10 pags., 3 figs. -- Advanced many-body and statistical methods in mesoscopic systems 27 June to 2 J...
Quantum dots are nanoscopic systems, where carriers are confined in all three spatial directions. Su...
We study acoustic-phonon-induced relaxation of charge excitations in single and tunnel-coupled quant...
4 pages, 3 figuresInternational audienceWe investigate scattering through chaotic ballistic quantum ...