International audienceRaman-scattering noise in silica has been the key obstacle toward the realisation of high quality fiber-based photon-pair sources. Here, we experimentally demonstrate how to get past this limitation by dispersion tailoring a xenon-filled hollow-core photonic crystal fiber. The source operates at room temperature, and is designed to generate Raman-free photon-pairs at useful wavelength ranges, with idler in the telecom, and signal in the visible range. We achieve a coincidence-to-accidentals ratio as high as 2740 combined with an ultra low heralded second order coherence g(2)H(0)=0.002, indicating a very high signal to noise ratio and a negligible multi-photon emission probability. Moreover, by gas-pressure tuning, we d...
This research project dealt with the implementation of a non-classical photon-pair source based on s...
We present a spectrally decorrelated photon pair source bridging the visible and telecom wavelength ...
A strong anti-Stokes Raman signal, from the vibrational Q(1) transition of hydrogen, is generated in...
International audienceRaman-scattering noise in silica has been the key obstacle toward the realisat...
International audienceFibered sources of photon pairs can be easily integrated into future quantum c...
Quantum telecommunication technologies rely on correlated photon pair sources, which are often based...
Tunable biphotons are highly important for a wide range of quantum applications. For some applicatio...
International audienceWe report on a Raman-free heralded single-photon source based on xenon-filled ...
Une technique couramment employée pour développer les sources de paires de photons corrélés indispen...
International audienceWe report on a novel means which lifts the restriction of the limited optical ...
We report a novel source of twin beams based on modulational instability in high-pressure argon-fill...
This dissertation describes the development and verification of a fiber based prototype system for g...
Many reports on stimulated Raman scattering in mixtures of Raman-active and noble gases indicate tha...
Photon pair sources are an essential component of the emerging quantum information technology. Despi...
Photon-number correlated twin beams can be efficiently generated either by parametric down-conversi...
This research project dealt with the implementation of a non-classical photon-pair source based on s...
We present a spectrally decorrelated photon pair source bridging the visible and telecom wavelength ...
A strong anti-Stokes Raman signal, from the vibrational Q(1) transition of hydrogen, is generated in...
International audienceRaman-scattering noise in silica has been the key obstacle toward the realisat...
International audienceFibered sources of photon pairs can be easily integrated into future quantum c...
Quantum telecommunication technologies rely on correlated photon pair sources, which are often based...
Tunable biphotons are highly important for a wide range of quantum applications. For some applicatio...
International audienceWe report on a Raman-free heralded single-photon source based on xenon-filled ...
Une technique couramment employée pour développer les sources de paires de photons corrélés indispen...
International audienceWe report on a novel means which lifts the restriction of the limited optical ...
We report a novel source of twin beams based on modulational instability in high-pressure argon-fill...
This dissertation describes the development and verification of a fiber based prototype system for g...
Many reports on stimulated Raman scattering in mixtures of Raman-active and noble gases indicate tha...
Photon pair sources are an essential component of the emerging quantum information technology. Despi...
Photon-number correlated twin beams can be efficiently generated either by parametric down-conversi...
This research project dealt with the implementation of a non-classical photon-pair source based on s...
We present a spectrally decorrelated photon pair source bridging the visible and telecom wavelength ...
A strong anti-Stokes Raman signal, from the vibrational Q(1) transition of hydrogen, is generated in...