Quantum dots are both excellent single-photon sources and hosts for single spins. This combination enables the deterministic generation of Raman-photons-bandwidth-matched to an atomic quantum-memory-and the generation of photon cluster states, a resource in quantum communication and measurement-based quantum computing. GaAs quantum dots in AlGaAs can be matched in frequency to a rubidium-based photon memory, and have potentially improved electron spin coherence compared to the widely used InGaAs quantum dots. However, their charge stability and optical linewidths are typically much worse than for their InGaAs counterparts. Here, we embed GaAs quantum dots into an n-i-p-diode specially designed for low-temperature operation. We demonstrate u...
This project has received funding from the European Union's Horizon 2020 research and innovation pro...
A self-assembled quantum dot confines both electrons and holes to a nano-sized region inside a semic...
The unconditional security of quantum networks and unparalleled acceleration of quantum algorithms e...
This thesis describes the development of low-noise GaAs QDs and their applications towards practical...
Electrons in InAs/GaAs quantum dots are strong candidates for qubits due to quantum confinement of t...
Self-assembled semiconductor quantum dots confine single carriers on the nanometer-scale. For the co...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
We demonstrate full charge control, narrow optical linewidths, and optical spin pumping on single se...
This work was financially supported by the Bundesministerium fűr Bildung und Forschung (BMBF) within...
This thesis concerns the growth and subsequent application of InAs/GaAs quantum dots for novel resea...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
We report results important for the creation of a best-of-both-worlds quantum hybrid system consisti...
Semiconductor quantum dots are objects with dimensions of a few to a few tens of nanometers. Confine...
Semiconductor-based emitters of pairwise photonic entanglement are a promising constituent of photon...
This project has received funding from the European Union's Horizon 2020 research and innovation pro...
A self-assembled quantum dot confines both electrons and holes to a nano-sized region inside a semic...
The unconditional security of quantum networks and unparalleled acceleration of quantum algorithms e...
This thesis describes the development of low-noise GaAs QDs and their applications towards practical...
Electrons in InAs/GaAs quantum dots are strong candidates for qubits due to quantum confinement of t...
Self-assembled semiconductor quantum dots confine single carriers on the nanometer-scale. For the co...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
We demonstrate full charge control, narrow optical linewidths, and optical spin pumping on single se...
This work was financially supported by the Bundesministerium fűr Bildung und Forschung (BMBF) within...
This thesis concerns the growth and subsequent application of InAs/GaAs quantum dots for novel resea...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
We report on a fast, bandwidth-tunable single-photon source based on an epitaxial GaAs quantum dot. ...
We report results important for the creation of a best-of-both-worlds quantum hybrid system consisti...
Semiconductor quantum dots are objects with dimensions of a few to a few tens of nanometers. Confine...
Semiconductor-based emitters of pairwise photonic entanglement are a promising constituent of photon...
This project has received funding from the European Union's Horizon 2020 research and innovation pro...
A self-assembled quantum dot confines both electrons and holes to a nano-sized region inside a semic...
The unconditional security of quantum networks and unparalleled acceleration of quantum algorithms e...