We demonstrate thefirst wavelength-tunable electri-cally pumped source of nonclassical light that can emit photons withwavelength in resonance with the D2transitions of87Rb atoms. Thedevice is fabricated by integrating a novel GaAs single-quantum-dotlight-emitting diode (LED) onto a piezoelectric actuator. By feedingthe emitted photons into a 75 mm long cell containing warm87Rbvapor, we observe slow-light with a temporal delay of up to 3.4 ns.In view of the possibility of using87Rb atomic vapors as quantummemories, this work makes an important step toward the realizationof hybrid-quantum systems for future quantum network
Triggered sources of entangled photon pairs are key components in most quantum communication protoco...
We demonstrate an all-electrically operated wavelength-tunable on demand single-photon source for th...
We demonstrate for the first time on-demand and wavelength-tunable single-photon emission from light...
We report results important for the creation of a best-of-both-worlds quantum hybrid system consisti...
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. ...
This project has received funding from the European Union's Horizon 2020 research and innovation pro...
Quantum memories matched to single photon sources will form an important cornerstone of future quant...
The deterministic generation and manipulation of quantum states has attracted much interest ever sin...
A hybrid system of a semiconductor quantum dot single photon source and a rubidium quantum memory re...
This work was financially supported by the Bundesministerium fűr Bildung und Forschung (BMBF) within...
On demand single-photon and entangled-photon sources are key building-blocks for many proposed photo...
The prospect of using the quantum nature of light for secure communication keeps spurring the search...
Semiconductor InAs/GaAs quantum dots grown by the Stranski-Krastanov method are among the leading ca...
Semiconductor quantum dots (QDs) are a promising source of quantum light, combining sub-Poissonian p...
Triggered sources of entangled photon pairs are key components in most quantum communication protoco...
We demonstrate an all-electrically operated wavelength-tunable on demand single-photon source for th...
We demonstrate for the first time on-demand and wavelength-tunable single-photon emission from light...
We report results important for the creation of a best-of-both-worlds quantum hybrid system consisti...
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. ...
This project has received funding from the European Union's Horizon 2020 research and innovation pro...
Quantum memories matched to single photon sources will form an important cornerstone of future quant...
The deterministic generation and manipulation of quantum states has attracted much interest ever sin...
A hybrid system of a semiconductor quantum dot single photon source and a rubidium quantum memory re...
This work was financially supported by the Bundesministerium fűr Bildung und Forschung (BMBF) within...
On demand single-photon and entangled-photon sources are key building-blocks for many proposed photo...
The prospect of using the quantum nature of light for secure communication keeps spurring the search...
Semiconductor InAs/GaAs quantum dots grown by the Stranski-Krastanov method are among the leading ca...
Semiconductor quantum dots (QDs) are a promising source of quantum light, combining sub-Poissonian p...
Triggered sources of entangled photon pairs are key components in most quantum communication protoco...
We demonstrate an all-electrically operated wavelength-tunable on demand single-photon source for th...
We demonstrate for the first time on-demand and wavelength-tunable single-photon emission from light...