© 2016 Author(s).We report on resonance fluorescence from a single quantum dot emitting at telecom wavelengths. We perform high-resolution spectroscopy and observe the Mollow triplet in the Rabi regime - a hallmark of resonance fluorescence. The measured resonance-fluorescence spectra allow us to rule out pure dephasing as a significant decoherence mechanism in these quantum dots. Combined with numerical simulations, the experimental results provide robust characterisation of charge noise in the environment of the quantum dot. Resonant control of the quantum dot opens up new possibilities for the on-demand generation of indistinguishable single photons at telecom wavelengths as well as quantum optics experiments and direct manipulation of s...
textSemiconductor quantum dots tightly confine excited electron-hole pairs, called excitons, resulti...
Linear quantum computation and teleportation requires interference of two single photons pulses. The...
Photonic quantum technologies call for scalable quantum light sources that can be integrated, while ...
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...
Resonance fluorescence from solid state devices have been motivated by the capability to obtain a b...
Integrated quantum light sources in photonic circuits are envisaged as the building blocks of future...
This project has received funding from the European Union's Horizon 2020 research and innovation pro...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
This work was funded by project SIQUTE (contract EXL02) of the European Metrology Research Programme...
textNext-generation information technology is expected to rely on discrete two-state quantum systems...
Resonantly driven quantum emitters offer a very promising route to obtain highly coherent sources of...
We acknowledge support by the State of Bavaria and the German Ministry of Education and Research (BM...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
textSemiconductor quantum dots tightly confine excited electron-hole pairs, called excitons, resulti...
Linear quantum computation and teleportation requires interference of two single photons pulses. The...
Photonic quantum technologies call for scalable quantum light sources that can be integrated, while ...
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...
Resonance fluorescence from solid state devices have been motivated by the capability to obtain a b...
Integrated quantum light sources in photonic circuits are envisaged as the building blocks of future...
This project has received funding from the European Union's Horizon 2020 research and innovation pro...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
International audienceWe demonstrate systematic resonance fluorescence recovery with near-unity emis...
This work was funded by project SIQUTE (contract EXL02) of the European Metrology Research Programme...
textNext-generation information technology is expected to rely on discrete two-state quantum systems...
Resonantly driven quantum emitters offer a very promising route to obtain highly coherent sources of...
We acknowledge support by the State of Bavaria and the German Ministry of Education and Research (BM...
International audienceSemiconductor quantum dots (QDs) are commonly considered as artificial atoms d...
textSemiconductor quantum dots tightly confine excited electron-hole pairs, called excitons, resulti...
Linear quantum computation and teleportation requires interference of two single photons pulses. The...
Photonic quantum technologies call for scalable quantum light sources that can be integrated, while ...