International audienceWe demonstrate theoretically and experimentally a high level of control of the four-wave mixing process in an inert gas–filled inhibited-coupling guiding hollow-core photonic crystal fiber. The specific multiple-branch dispersion profile in such fibers allows both correlated and separable bi-photon states to be produced. By controlling the choice of gas and its pressure and the fiber length, we experimentally generate various joint spectral intensity profiles in a stimulated regime that is transferable to the spontaneous regime. The generated profiles may cover both spectrally separable and correlated bi-photon states and feature frequency tuning over tens of THz, demonstrating a large dynamic control that will be very...
International audienceWe experimentally and theoretically investigate the process of seeded intermod...
Nowadays fiber biphoton sources are nearly as popular as crystal-based ones. They offer a single spa...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
International audienceWe demonstrate theoretically and experimentally a high level of control of the...
International audienceWe experimentally show how multiband dispersion properties of inhibited-coupli...
Photon-number correlated twin beams can be efficiently generated either by parametric down-conversi...
We study theoretically the generation of photon pairs by spontaneous four-wave mixing (SFWM) in phot...
This research project dealt with the implementation of a non-classical photon-pair source based on s...
We present a detailed experimental study of fourwave mixing tuning in photonic crystal fibers that w...
The generation of photon-pairs with controllable spectral correlations is crucial in quantum photoni...
Four-wave mixing in optical fibers has been proven to have many applications within processing of cl...
International audienceFibered sources of photon pairs can be easily integrated into future quantum c...
Lorenz, VirginiaThis thesis presents an experimental implementation and a theoretical inves-tigation...
International audienceWe experimentally and theoretically investigate the process of seeded intermod...
Nowadays fiber biphoton sources are nearly as popular as crystal-based ones. They offer a single spa...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...
International audienceWe demonstrate theoretically and experimentally a high level of control of the...
International audienceWe experimentally show how multiband dispersion properties of inhibited-coupli...
Photon-number correlated twin beams can be efficiently generated either by parametric down-conversi...
We study theoretically the generation of photon pairs by spontaneous four-wave mixing (SFWM) in phot...
This research project dealt with the implementation of a non-classical photon-pair source based on s...
We present a detailed experimental study of fourwave mixing tuning in photonic crystal fibers that w...
The generation of photon-pairs with controllable spectral correlations is crucial in quantum photoni...
Four-wave mixing in optical fibers has been proven to have many applications within processing of cl...
International audienceFibered sources of photon pairs can be easily integrated into future quantum c...
Lorenz, VirginiaThis thesis presents an experimental implementation and a theoretical inves-tigation...
International audienceWe experimentally and theoretically investigate the process of seeded intermod...
Nowadays fiber biphoton sources are nearly as popular as crystal-based ones. They offer a single spa...
Nonclassical photon sources of high brightness are key components of quantum communication technolog...