We report on Coulomb correlation effects in the luminescence of strain‐induced quantum dots. In single dots, under low power excitation, we observe the rising of sharp lines associated to the formation of excitonic molecules. In the grand‐ensemble, in magnetic fields up to 45 T, we observe Darwin‐Fock states of the dots to merge into a unique Landau level, with a considerable reduction in the total diamagnetic shift due to the enhanced electron–hole correlation caused by the increased degeneracy of the state
We have studied photoluminescence from GaAs/AlxGa1-xAs strain-induced quantum dots in a magnetic fie...
Electron correlations in a two-electron two-dimensional ‘artificial atom’ or quantum dot (with harmo...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
We report on Coulomb correlation effects in the luminescence of strain‐induced quantum dots. In sing...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
We investigate correlation effects in few-electron lateral quantum dots between filling factor \u3bd...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
In this Thesis, I present a theoretical study of correlation effects in strongly interacting electro...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We present an experimental study and develop a group theoretical analysis of the Zeeman effect on ex...
Applying a magnetic field on an electronic system where levels are quantized has the effect of lifti...
Quantum beats of the strain-induced GaAs quantum dots were observed in the time-resolved photolumine...
We have studied photoluminescence from GaAs/AlxGa1-xAs strain-induced quantum dots in a magnetic fie...
Electron correlations in a two-electron two-dimensional ‘artificial atom’ or quantum dot (with harmo...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
We report on Coulomb correlation effects in the luminescence of strain‐induced quantum dots. In sing...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
We investigate correlation effects in few-electron lateral quantum dots between filling factor \u3bd...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
In this Thesis, I present a theoretical study of correlation effects in strongly interacting electro...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We investigate the effects of few-particle population of a single strain-induced quantum dot by opti...
We present an experimental study and develop a group theoretical analysis of the Zeeman effect on ex...
Applying a magnetic field on an electronic system where levels are quantized has the effect of lifti...
Quantum beats of the strain-induced GaAs quantum dots were observed in the time-resolved photolumine...
We have studied photoluminescence from GaAs/AlxGa1-xAs strain-induced quantum dots in a magnetic fie...
Electron correlations in a two-electron two-dimensional ‘artificial atom’ or quantum dot (with harmo...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...