We theoretically investigate the properties of neutral and charged excitons in vertically coupled quantum dots, as a function of the in-plane magnetic field. The single-particle states are computed by numerically solving the 3D effective-mass equation, while the neutral- and charged-exciton states are obtained by means of a configuration interaction approach. We show that the field determines an enhancement of the interdot correlations, resulting in unexpected carrier localization. The field effect on the excitonic binding energies is also discussed, and is shown to strongly depend on the charging. (c) 2004 Elsevier B.V. All rights reserved
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We present excitation energy spectra of few-electron vertically coupled quantum dots for strong and ...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We theoretically investigate the properties of neutral and charged excitons in vertically coupled qu...
We theoretically investigate the properties of neutral and charged excitons and of the biexciton in ...
We theoretically investigate the properties of neutral and charged excitons and of the biexciton in ...
We theoretically investigate the effect of a magnetic field perpendicular to the tunneling direction...
We theoretically investigate the effect of a magnetic field perpendicular to the tunneling direction...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
We review results of our modeling of excitons and excitonic trions confined in vertically stacked In...
In this Thesis, I present a theoretical study of correlation effects in strongly interacting electro...
Ground- and excited-state properties of vertically coupled double quantum dots are studied by exact ...
We study the effect of interactions of many electrons and holes on optical properties of quantum dot...
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
The magnetic field dependence of the excitonic states in unstrained GaAs/AlxGa1-xAs quantum dots is...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We present excitation energy spectra of few-electron vertically coupled quantum dots for strong and ...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We theoretically investigate the properties of neutral and charged excitons in vertically coupled qu...
We theoretically investigate the properties of neutral and charged excitons and of the biexciton in ...
We theoretically investigate the properties of neutral and charged excitons and of the biexciton in ...
We theoretically investigate the effect of a magnetic field perpendicular to the tunneling direction...
We theoretically investigate the effect of a magnetic field perpendicular to the tunneling direction...
A theory of the fine structure of correlated exciton states in self-assembled parabolic semiconducto...
We review results of our modeling of excitons and excitonic trions confined in vertically stacked In...
In this Thesis, I present a theoretical study of correlation effects in strongly interacting electro...
Ground- and excited-state properties of vertically coupled double quantum dots are studied by exact ...
We study the effect of interactions of many electrons and holes on optical properties of quantum dot...
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
The magnetic field dependence of the excitonic states in unstrained GaAs/AlxGa1-xAs quantum dots is...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We present excitation energy spectra of few-electron vertically coupled quantum dots for strong and ...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...