activity
20122022
most citedEinstein-Podolsky-Rosen paradox in twin images

103 citations · 250 across the 6 of their papers we have counts for

collaborators

6 papers

physics.optics20221 cited

Imaging below the camera noise floor with a homodyne microscope

Osian Wolley, Simon Mekhail, Paul-Antoine Moreau +4

We present a wide-field homodyne imaging system capable of recovering intensity and phase images of an object from a single camera frame at an illumination intensity significantly…

quant-ph201636 cited

Temporal ghost imaging with twin photons

Séverine Denis, Paul-Antoine Moreau, Fabrice Devaux +1

We use twin photons generated by spontaneous parametric down conversion (SPDC) to perform temporal ghost imaging of a single time signal. The retrieval of a binary signal containin…

quant-ph20162 cited

Demonstrating an absolute quantum advantage in direct absorption measurement

Paul-Antoine Moreau, Javier Sabines-Chesterking, Rebecca Whittaker +5

Engineering apparatus that harness quantum theory offers practical advantages over current technology. A fundamentally more powerful prospect is the long-standing prediction that s…

quant-ph201420 cited

Optimising the signal-to-noise ratio in measurement of photon pairs with detector arrays

Eric Lantz, Paul-Antoine Moreau, Fabrice Devaux

To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a full field measurement, without any a priori selection of the paired photons. We…

quant-ph2014103 cited

Einstein-Podolsky-Rosen paradox in twin images

Paul-Antoine Moreau, Fabrice Devaux, Eric Lantz

Spatially entangled twin photons provide both promising resources for modern quantum information protocols, because of the high dimensionality of transverse entanglement, and a tes…

quant-ph201288 cited

Realization of the purely spatial Einstein-Podolsky-Rosen paradox in full-field images of spontaneous parametric down conversion

Paul-Antoine Moreau, Joé Mougin-Sisini, Fabrice Devaux +1

We demonstrate Einstein-Podolsky-Rosen (EPR) entanglement by detecting purely spatial quantum correlations in the near and far fields of spontaneous parametric down-conversion gene…