Quantum dots tuned to atomic resonances represent an emerging field of hybrid quantum systems where the advantages of quantum dots and natural atoms can be combined. Embedding quantum dots in nanowires boosts these systems with a set of powerful possibilities, such as precise positioning of the emitters, excellent photon extraction efficiency and direct electrical contacting of quantum dots. Notably, nanowire structures can be grown on silicon substrates, allowing for a straightforward integration with silicon-based photonic devices. In this work we show controlled growth of nanowire-quantum-dot structures on silicon, frequency tuned to atomic transitions. We grow GaAs quantum dots in AlGaAs nanowires with a nearly pure crystal structure an...
Quantum dots (QDs) embedded in semiconductors nanowires are of great interest for photonic quantum t...
A bright photon source that combines high-fidelity entanglement, on-demand generation, high extracti...
This work aims at controlling the spectral properties of the photons that are emitted by a semicondu...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
Quantum dots embedded within nanowires represent one of the most promising technologies for applicat...
Quantum dots embedded within nanowires represent one of the most promising technologies for applicat...
This thesis is dedicated to the engineering of the emission energy of quantum dots embedded in core-...
On-chip quantum light sources on silicon photonic platforms have been the primary building block for...
On-chip quantum light sources on silicon photonic platforms have been the primary building block for...
Quantum dot (QD) emitters on silicon platforms have been considered as a fascinating approach to bui...
Quantum dot (QD) emitters on silicon platforms have been considered as a fascinating approach to bui...
In this thesis work, I studied individual quantum dots embedded in one-dimensional nanostructures ca...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
Quantum dots (QDs) embedded in semiconductors nanowires are of great interest for photonic quantum t...
A bright photon source that combines high-fidelity entanglement, on-demand generation, high extracti...
This work aims at controlling the spectral properties of the photons that are emitted by a semicondu...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
Quantum dots embedded within nanowires represent one of the most promising technologies for applicat...
Quantum dots embedded within nanowires represent one of the most promising technologies for applicat...
This thesis is dedicated to the engineering of the emission energy of quantum dots embedded in core-...
On-chip quantum light sources on silicon photonic platforms have been the primary building block for...
On-chip quantum light sources on silicon photonic platforms have been the primary building block for...
Quantum dot (QD) emitters on silicon platforms have been considered as a fascinating approach to bui...
Quantum dot (QD) emitters on silicon platforms have been considered as a fascinating approach to bui...
In this thesis work, I studied individual quantum dots embedded in one-dimensional nanostructures ca...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
An important goal for nanoscale opto-electronics is the transfer of single electron spin states into...
Quantum dots (QDs) embedded in semiconductors nanowires are of great interest for photonic quantum t...
A bright photon source that combines high-fidelity entanglement, on-demand generation, high extracti...
This work aims at controlling the spectral properties of the photons that are emitted by a semicondu...