International audienceAbstract Coherent exchange of single photons is at the heart of applied quantum optics. The negatively-charged silicon vacancy center in diamond is among most promising sources for coherent single photons. Its large Debye–Waller factor, short lifetime and extraordinary spectral stability is unique in the field of solid-state single photon sources. However, the excitation and detection of individual centers requires high numerical aperture (NA) optics which, combined with the need for cryogenic temperatures, puts technical overhead on experimental realizations. Here, we investigate a hybrid quantum photonics platform based on silicon-vacancy center in nanodiamonds and metallic bullseye antenna to realize a coherent sing...
We report progress in the development of tunable room temperature triggered single photon sources ba...
We report on the experimental realization of an absolute single-photon source based on a single nitr...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
The practical implementation of many quantum technologies relies on the development of robust and br...
Single-photon sources are an integral part of various quantum technologies, and solid-state quantum ...
We demonstrate that silicon-vacancy (SiV) centers in diamond can be used to efficiently generate coh...
We report the observation of single photon emission from single SiV (silicon-vacancy) centres in dia...
Silicon-vacancy (SiV) centers in diamond are bright sources of indistinguishable single photons. We ...
Quantum communication places stringent requirements on single-photon sources. Here we report a theor...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
International audienceStriving for nanometer-sized solid-state single-photon sources, we investigate...
International audienceColour centres in nanodiamonds are an important resource for applications in q...
Single photons are fundamental elements for quantum information technologies such as quantum cryptog...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
The controlled creation of defect centre - nanocavity systems is one of the outstanding challenges f...
We report progress in the development of tunable room temperature triggered single photon sources ba...
We report on the experimental realization of an absolute single-photon source based on a single nitr...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
The practical implementation of many quantum technologies relies on the development of robust and br...
Single-photon sources are an integral part of various quantum technologies, and solid-state quantum ...
We demonstrate that silicon-vacancy (SiV) centers in diamond can be used to efficiently generate coh...
We report the observation of single photon emission from single SiV (silicon-vacancy) centres in dia...
Silicon-vacancy (SiV) centers in diamond are bright sources of indistinguishable single photons. We ...
Quantum communication places stringent requirements on single-photon sources. Here we report a theor...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
International audienceStriving for nanometer-sized solid-state single-photon sources, we investigate...
International audienceColour centres in nanodiamonds are an important resource for applications in q...
Single photons are fundamental elements for quantum information technologies such as quantum cryptog...
The creation of single, negatively charged silicon vacancy SiV amp; 8722; centers in well defined ...
The controlled creation of defect centre - nanocavity systems is one of the outstanding challenges f...
We report progress in the development of tunable room temperature triggered single photon sources ba...
We report on the experimental realization of an absolute single-photon source based on a single nitr...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...