We have employed inelastic light scattering to investigate electronic excitations of quantum dots in a magnetic field. For small magnetic fields the dispersion of the single-particle excitations (SPEs) follows the Fock–Darwin behavior. But already at moderate fields of Bgreater-or-equal, slanted0.6 T the SPEs deviate from that dispersion and follow directly the cyclotron resonance. This finding is explained by Coulomb-interaction-induced formation of bulk states in the center of the dot. Self-consistent ground-state calculations within the local-density approximation reproduce this result
There is currently interest in developing control over the spin of a single Manganese (Mn) ion, the ...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
We present a microscopic theory of the magnetic field dependence of the optical properties of II-VI ...
We study the effect of interactions of many electrons and holes on optical properties of quantum dot...
Exact solutions of the eigenstates of two-interacting electron quantum dot nanostructures in an exte...
Abstract. The effects of direct Coulomb and exchange inter-actions on spin states are studied for qu...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
Inelastic light scattering experiments on deep-etched GaAs/AlGaAs modulation doped quantum dots in a...
The photoluminescence of quantum dots is studied in a high magnetic field regime where the cyclotron...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We theoretically investigate the effect of a magnetic field perpendicular to the tunneling direction...
We theoretically investigate the properties of neutral and charged excitons in vertically coupled qu...
Magnetoexcitons interacting with strongly correlated electronic states in quantum dots in a strong m...
Applying a magnetic field on an electronic system where levels are quantized has the effect of lifti...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
There is currently interest in developing control over the spin of a single Manganese (Mn) ion, the ...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
We present a microscopic theory of the magnetic field dependence of the optical properties of II-VI ...
We study the effect of interactions of many electrons and holes on optical properties of quantum dot...
Exact solutions of the eigenstates of two-interacting electron quantum dot nanostructures in an exte...
Abstract. The effects of direct Coulomb and exchange inter-actions on spin states are studied for qu...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
Inelastic light scattering experiments on deep-etched GaAs/AlGaAs modulation doped quantum dots in a...
The photoluminescence of quantum dots is studied in a high magnetic field regime where the cyclotron...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We theoretically investigate the effect of a magnetic field perpendicular to the tunneling direction...
We theoretically investigate the properties of neutral and charged excitons in vertically coupled qu...
Magnetoexcitons interacting with strongly correlated electronic states in quantum dots in a strong m...
Applying a magnetic field on an electronic system where levels are quantized has the effect of lifti...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
There is currently interest in developing control over the spin of a single Manganese (Mn) ion, the ...
The influence of the direct and exchange Coulomb interaction on Landau level formation in strain ind...
We present a microscopic theory of the magnetic field dependence of the optical properties of II-VI ...