One of the key challenges in developing quantum networks is to generate single photons with high brightness, purity, and long temporal coherence. Semiconductor quantum dots potentially satisfy these requirements; however, due to imperfections in the surrounding material, the coherence generally degrades with increasing excitation power yielding a broader emission spectrum. Here we overcome this power-broadening regime and demonstrate an enhanced coherence at exciton saturation where the detected count rates are highest. We detect single-photon count rates of 460 000 counts per second under pulsed laser excitation while maintaining a single-photon purity greater than 99%. Importantly, the enhanced coherence is attained with quantum dots in u...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
Single quantum dots embedded in tapered nanowire waveguides have emerged as leading candidates for d...
Interfacing single photons and electrons is a crucial element in sharing quantum information between...
<p>One of the key challenges in developing quantum networks is to generate single photons with high ...
We report on the ultraclean emission from single quantum dots embedded in pure wurtzite nanowires. U...
We report on the ultraclean emission from single quantum dots embedded in pure wurtzite nanowires. U...
High-quality quantum light sources are crucial components for the implementation of practical and re...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
ABSTRACT: We report on the ultraclean emission from single quantum dots embedded in pure wurtzite na...
Light-matter interactions in semiconductor nanostructures have attracted significant research intere...
Quantum dots (QDs) embedded in semiconductors nanowires are of great interest for photonic quantum t...
Electron transfer to an individual quantum dot promotes the formation of charged excitons with enhan...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
International audienceWe have carried out a detailed optical characterization of a single CdSe quant...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
Single quantum dots embedded in tapered nanowire waveguides have emerged as leading candidates for d...
Interfacing single photons and electrons is a crucial element in sharing quantum information between...
<p>One of the key challenges in developing quantum networks is to generate single photons with high ...
We report on the ultraclean emission from single quantum dots embedded in pure wurtzite nanowires. U...
We report on the ultraclean emission from single quantum dots embedded in pure wurtzite nanowires. U...
High-quality quantum light sources are crucial components for the implementation of practical and re...
In the future world of quantum communication and computing, infomation cannot be hacked and computer...
ABSTRACT: We report on the ultraclean emission from single quantum dots embedded in pure wurtzite na...
Light-matter interactions in semiconductor nanostructures have attracted significant research intere...
Quantum dots (QDs) embedded in semiconductors nanowires are of great interest for photonic quantum t...
Electron transfer to an individual quantum dot promotes the formation of charged excitons with enhan...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
International audienceWe have carried out a detailed optical characterization of a single CdSe quant...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
Communication oraleInternational audienceSemiconductor quantum dots (QDs) are commonly considered as...
Single quantum dots embedded in tapered nanowire waveguides have emerged as leading candidates for d...
Interfacing single photons and electrons is a crucial element in sharing quantum information between...