This work was funded by project SIQUTE (contract EXL02) of the European Metrology Research Programme (EMRP). The EMRP is jointly funded by the EMRP participating countries within EURAMET and the European Union. Support was provided from the Villum Foundation via the VKR Centre of Excellence NATEC.Resonant excitation of solid state quantum emitters has the potential to deterministically excite a localized exciton while ensuring maximally coherent emission. In this work, we demonstrate the coherent coupling of an exciton localized in a lithographically positioned, site-controlled semiconductor quantum dot to an external resonant laser field. For strong continuous-wave driving we observe the characteristic Mollow triplet and analyze the Rabi s...
We study the crucial role played by the solid-state environment in determining the photon emission c...
Excitons in quantum dots represent a remarkably good two-level system with a large optical dipole tr...
Coherent control of individual two-level systems is at the heart of any quantum information protocol...
Resonant excitation of solid state quantum emitters has the potential to deterministically excite a ...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
We report on resonance fluorescence from a single quantum dot emitting at telecom wavelengths. We pe...
We report on resonance fluorescence from a single quantum dot emitting at telecom wavelengths. We pe...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
textSemiconductor quantum dots tightly confine excited electron-hole pairs, called excitons, resulti...
© 2016 Author(s).We report on resonance fluorescence from a single quantum dot emitting at telecom w...
Excitons in quantum dots represent a remarkably good two-level system with a large optical dipole tr...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
We study the crucial role played by the solid-state environment in determining the photon emission c...
Excitons in quantum dots represent a remarkably good two-level system with a large optical dipole tr...
Coherent control of individual two-level systems is at the heart of any quantum information protocol...
Resonant excitation of solid state quantum emitters has the potential to deterministically excite a ...
Single-quantum emitters emit only one photon at a time, but the properties of the photon depend on h...
We report on resonance fluorescence from a single quantum dot emitting at telecom wavelengths. We pe...
We report on resonance fluorescence from a single quantum dot emitting at telecom wavelengths. We pe...
Single-quantum emitters emit only one photon at a time(1,2), but the properties of the photon depend...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
textSemiconductor quantum dots tightly confine excited electron-hole pairs, called excitons, resulti...
© 2016 Author(s).We report on resonance fluorescence from a single quantum dot emitting at telecom w...
Excitons in quantum dots represent a remarkably good two-level system with a large optical dipole tr...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
Semiconductor nanostructures such as quantum dots (QDs) have offered unique opportunities to investi...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
We study the crucial role played by the solid-state environment in determining the photon emission c...
Excitons in quantum dots represent a remarkably good two-level system with a large optical dipole tr...
Coherent control of individual two-level systems is at the heart of any quantum information protocol...