We present the key elements required for continuous variable parallel quantum information protocols based on spatial multimode quantum correlations. We describe techniques for encoding, combining and detecting spatial quantum information with high efficiency in the individual transverse modes. Until now, the missing feature for the implementation of such protocols was the generation of squeezing in higher order transverse Hermite-Gauss modes. We experimentally demonstrate squeezing in selective modes by fine-tuning the phase matching condition of the nonlinear χ(2) material and the cavity resonance condition of an optical parametric amplifier. Combined, these results open the way to practical multimode optical quantum information systems
We consider the problem of measurement of optical transverse profile parameters and their conjugate...
Protocols of quantum information processing are the foundation of quantum technology, allowing to sh...
The focus of this thesis is to investigate the effects of quantum squeezing implementation toward th...
We present in this thesis a study of the spatial properties of light at the quantum level. More spec...
Optical entanglement is a key requirement for many quantum communication protocols. Conventionally, ...
We demonstrate quantum correlations in the transverse plane of continuous wave light beams by produc...
Quantum computation and communication protocols require quantum resources which are in the continuou...
We demonstrate quantum correlations in the transverse plane of continuous wave light beams by produc...
International audienceWe present a single-pass source of broadband multimode squeezed light with pot...
The ability to use the temporal and spatial degrees of freedom of quantum states of light to encode ...
We consider the quantum description of light in the continuouswave regime, where photons are not dis...
We show that the effect of measurement back-action results in the generation of multiple many-body s...
International audienceWe have experimentally studied parametric amplification in the c.w. regime usi...
Broadband multimode squeezers constitute a powerful quantum resource with promising potential for di...
© 2019 American Physical Society. ©2019 American Physical Society.We present a scheme for generating...
We consider the problem of measurement of optical transverse profile parameters and their conjugate...
Protocols of quantum information processing are the foundation of quantum technology, allowing to sh...
The focus of this thesis is to investigate the effects of quantum squeezing implementation toward th...
We present in this thesis a study of the spatial properties of light at the quantum level. More spec...
Optical entanglement is a key requirement for many quantum communication protocols. Conventionally, ...
We demonstrate quantum correlations in the transverse plane of continuous wave light beams by produc...
Quantum computation and communication protocols require quantum resources which are in the continuou...
We demonstrate quantum correlations in the transverse plane of continuous wave light beams by produc...
International audienceWe present a single-pass source of broadband multimode squeezed light with pot...
The ability to use the temporal and spatial degrees of freedom of quantum states of light to encode ...
We consider the quantum description of light in the continuouswave regime, where photons are not dis...
We show that the effect of measurement back-action results in the generation of multiple many-body s...
International audienceWe have experimentally studied parametric amplification in the c.w. regime usi...
Broadband multimode squeezers constitute a powerful quantum resource with promising potential for di...
© 2019 American Physical Society. ©2019 American Physical Society.We present a scheme for generating...
We consider the problem of measurement of optical transverse profile parameters and their conjugate...
Protocols of quantum information processing are the foundation of quantum technology, allowing to sh...
The focus of this thesis is to investigate the effects of quantum squeezing implementation toward th...