A detailed analysis of the electro-optical response of single as well as coupled semiconductor quantum dots is presented. This is based on a realistic—i.e., fully tridimensional—description of Coulomb-correlated few-electron states, obtained via a direct-diagonalization approach. More specifically, we investigate the combined effect of static electric fields and ultrafast sequences of multicolor laser pulses in the few-carrier, i.e., low-excitation regime. In particular, we show how the presence of a properly tailored static field may give rise to significant electron-hole charge separation; these field-induced dipoles, in turn, may introduce relevant exciton-exciton couplings, which are found to induce significant—both intra-dot and inte...
An all optical implementation of quantum information processing with semiconductor macroatoms is pro...
Self-assembled semiconductor quantum dots confine single carriers on the nanometer-scale. For the co...
We propose an all-optical implementation of quantum-information processing in semiconductor quantum ...
A detailed analysis of the electro-optical response of single as well as coupled semiconductor quant...
An original approach for the control of exciton–exciton Coulomb coupling in semiconductor macroatoms...
We present a fully three-dimensional study of the multiexciton optical response of vertically couple...
In this paper we propose to use GaN quantum dots (QDs) as building blocks for solid state quantum co...
[Excerpt from the Introduction]: This thesis focuses on neutral excitations of few-electrons states ...
We study the multiexciton optical spectrum of vertically coupled GaN/AlN quantum dots with a realist...
In this Rapid Communication we propose to use GaN-based quantum dots as building blocks for solid-st...
We present a novel approach for the control of exciton–exciton Coulomb coupling in semiconductor qua...
We study few-particle interactions in GaN-coupled quantum dots and discuss how the built-in field ch...
As the size and proximity of components on modern computer chips approaches quantum mechanical limit...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
Single InxGa1-xAs/GaAs quantum dot photoluminescence spectra, obtained by low-temperature near-field...
An all optical implementation of quantum information processing with semiconductor macroatoms is pro...
Self-assembled semiconductor quantum dots confine single carriers on the nanometer-scale. For the co...
We propose an all-optical implementation of quantum-information processing in semiconductor quantum ...
A detailed analysis of the electro-optical response of single as well as coupled semiconductor quant...
An original approach for the control of exciton–exciton Coulomb coupling in semiconductor macroatoms...
We present a fully three-dimensional study of the multiexciton optical response of vertically couple...
In this paper we propose to use GaN quantum dots (QDs) as building blocks for solid state quantum co...
[Excerpt from the Introduction]: This thesis focuses on neutral excitations of few-electrons states ...
We study the multiexciton optical spectrum of vertically coupled GaN/AlN quantum dots with a realist...
In this Rapid Communication we propose to use GaN-based quantum dots as building blocks for solid-st...
We present a novel approach for the control of exciton–exciton Coulomb coupling in semiconductor qua...
We study few-particle interactions in GaN-coupled quantum dots and discuss how the built-in field ch...
As the size and proximity of components on modern computer chips approaches quantum mechanical limit...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
Single InxGa1-xAs/GaAs quantum dot photoluminescence spectra, obtained by low-temperature near-field...
An all optical implementation of quantum information processing with semiconductor macroatoms is pro...
Self-assembled semiconductor quantum dots confine single carriers on the nanometer-scale. For the co...
We propose an all-optical implementation of quantum-information processing in semiconductor quantum ...