We develop an analytic model that relates intensity correlation measurements performed by an image sensor to the properties of photon pairs illuminating it. Experiments using an effective single-photon counting camera, a linear electron-multiplying charge-coupled device camera, and a standard CCD camera confirm the model. The results open the field of quantum optical sensing using conventional detectors
During the last decades, multi-pixel detectors have been developed capable of registering single pho...
use of any of the information contained in it must acknowledge this thesis as the source of the quot...
Electron-multiplying charge coupled devices promise to revolutionize ultrasensitive optical imaging....
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
International audienceTo evidence multimode spatial entanglement of spontaneous down-conversion, det...
In this review we present the potentialities and the achievements of the use of non-classical photon...
Intensity correlation measurements form the basis of many experiments based on spontaneous parametri...
Photo-detection plays a fundamental role in experimental quantum optics and is of particular importa...
Photo-detection plays a fundamental role in experimental quantum optics and is of particular importa...
Non-classical correlations in optical beams offer the unprecedented opportunity of surpassing conven...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
We experimentally characterize the performance of the electron multiplying charge-coupled device (EM...
Photon-counting image sensors represent a possible paradigm shift in solid-state image sensors. In t...
Ghost imaging can be performed using either quantum or classical states of light that possess strong...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
During the last decades, multi-pixel detectors have been developed capable of registering single pho...
use of any of the information contained in it must acknowledge this thesis as the source of the quot...
Electron-multiplying charge coupled devices promise to revolutionize ultrasensitive optical imaging....
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
International audienceTo evidence multimode spatial entanglement of spontaneous down-conversion, det...
In this review we present the potentialities and the achievements of the use of non-classical photon...
Intensity correlation measurements form the basis of many experiments based on spontaneous parametri...
Photo-detection plays a fundamental role in experimental quantum optics and is of particular importa...
Photo-detection plays a fundamental role in experimental quantum optics and is of particular importa...
Non-classical correlations in optical beams offer the unprecedented opportunity of surpassing conven...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
We experimentally characterize the performance of the electron multiplying charge-coupled device (EM...
Photon-counting image sensors represent a possible paradigm shift in solid-state image sensors. In t...
Ghost imaging can be performed using either quantum or classical states of light that possess strong...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
During the last decades, multi-pixel detectors have been developed capable of registering single pho...
use of any of the information contained in it must acknowledge this thesis as the source of the quot...
Electron-multiplying charge coupled devices promise to revolutionize ultrasensitive optical imaging....