Semiconductor quantum dots are usually compared to artificial atoms, because their electronic structure consists of discrete energy levels as for natural atoms. These artificial systems are integrated in solid materials and can be localized with a spatial precision of the order of nanometers. Besides, they conserve their quantum properties even at quite high temperatures (∼ 10 K). These properties make quantum dots one of the most suitable systems for the realization of quantum devices and computers. However, the energy states and the optical properties of quantum dots are much more complicated than for atoms, because a quantum dot is never an isolated potential well. Instead, its electronic structure depends on the crystallin structure of ...
We present results on the polarization-resolved photoluminescence emitted from InGaAs/AlGaAs single ...
The present work achieves an understanding of the interplay between morphology, electronic, and opti...
Confined electrons are found everywhere in nature in the form of atoms in which the Coulomb attracti...
Self-assembled semiconductor quantum dots confine single carriers on the nanometer-scale. For the co...
Among other systems quantum dots have been considered a's one of the prime candidates for a solid st...
Semiconductor quantum wires (QWRs) and quantum dots (QDs) are nanoscale heterostructures, which form...
The engineering of the three-dimensional (3D) heterostructure potential in GaAs/AlGaAs pyramidal qua...
The area of quantum information promises to deliver a range of new technologies in the fields of qua...
This thesis presents different optical experiments performed on semiconductor quantum dots. These st...
Semiconductor quantum dots are objects with dimensions of a few to a few tens of nanometers. Confine...
The present work achieves an understanding of the interplay between morphology, electronic, and opti...
Quantum information technology is an interdisciplinary subject, merging quantum mechanics and inform...
This thesis focuses on pioneering a scalable route to fabricate quantum information devices based up...
For practical applications of quantum dots in light emitters as well as for fundamental studies of t...
The goal of this thesis work was to characterise quantum dots obtained by a novel growth method. We ...
We present results on the polarization-resolved photoluminescence emitted from InGaAs/AlGaAs single ...
The present work achieves an understanding of the interplay between morphology, electronic, and opti...
Confined electrons are found everywhere in nature in the form of atoms in which the Coulomb attracti...
Self-assembled semiconductor quantum dots confine single carriers on the nanometer-scale. For the co...
Among other systems quantum dots have been considered a's one of the prime candidates for a solid st...
Semiconductor quantum wires (QWRs) and quantum dots (QDs) are nanoscale heterostructures, which form...
The engineering of the three-dimensional (3D) heterostructure potential in GaAs/AlGaAs pyramidal qua...
The area of quantum information promises to deliver a range of new technologies in the fields of qua...
This thesis presents different optical experiments performed on semiconductor quantum dots. These st...
Semiconductor quantum dots are objects with dimensions of a few to a few tens of nanometers. Confine...
The present work achieves an understanding of the interplay between morphology, electronic, and opti...
Quantum information technology is an interdisciplinary subject, merging quantum mechanics and inform...
This thesis focuses on pioneering a scalable route to fabricate quantum information devices based up...
For practical applications of quantum dots in light emitters as well as for fundamental studies of t...
The goal of this thesis work was to characterise quantum dots obtained by a novel growth method. We ...
We present results on the polarization-resolved photoluminescence emitted from InGaAs/AlGaAs single ...
The present work achieves an understanding of the interplay between morphology, electronic, and opti...
Confined electrons are found everywhere in nature in the form of atoms in which the Coulomb attracti...