Single photon avalanche diode arrays can provide both the spatial and temporal information of each detected photon. We present here the characterization of entangled light with a sensor specifically designed for quantum imaging applications. The sensors is time-tagging each detection events at the pixel level with sub-nanosecond accuracy, within frames of 50 ns. The spatial correlations between any number of detections in a defined temporal window can thus be directly extracted from the data. We show the ability of the sensor to characterize space-momentum entangled photon pairs emitted by spontaneous parametric downconversion. Their entanglement is demonstrated by violating an EPR-type inequality
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
This article reports the design and characterization of a 32 × 32 single-photon avalanche diode (SPA...
Quantum microscopy requires efficient detectors able to identify temporal correlations among photons...
Spatial correlations between two photons are the key resource in realising many quantum imaging sche...
MOS SPAD imagers are potentially good candidates for detection of entangled photons in Quantum Imagi...
Quantum technology promises improvements in imaging, computing, and communication, for example using...
The light produced by parametric down-conversion shows strong spatial entanglement that leads to vio...
Quantum imaging uses entangled photons to overcome the limits of a classical-light apparatus in term...
The ability to generate and handle quantum correlations in twin-beam states is the foundation to ove...
We implement a double-pixel compressive-sensing camera to efficiently characterize, at high resoluti...
Single-photon avalanche diode (SPAD) arrays are essential tools in biophotonics, optical ranging and...
We demonstrate coincidence measurements of spatially entangled photons by means of a multi-pixel bas...
High-dimensional entanglement is a promising resource for quantum technologies. Being able to certif...
In this study of quantum optics, we want to extract information associated with quantum mechanically...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
This article reports the design and characterization of a 32 × 32 single-photon avalanche diode (SPA...
Quantum microscopy requires efficient detectors able to identify temporal correlations among photons...
Spatial correlations between two photons are the key resource in realising many quantum imaging sche...
MOS SPAD imagers are potentially good candidates for detection of entangled photons in Quantum Imagi...
Quantum technology promises improvements in imaging, computing, and communication, for example using...
The light produced by parametric down-conversion shows strong spatial entanglement that leads to vio...
Quantum imaging uses entangled photons to overcome the limits of a classical-light apparatus in term...
The ability to generate and handle quantum correlations in twin-beam states is the foundation to ove...
We implement a double-pixel compressive-sensing camera to efficiently characterize, at high resoluti...
Single-photon avalanche diode (SPAD) arrays are essential tools in biophotonics, optical ranging and...
We demonstrate coincidence measurements of spatially entangled photons by means of a multi-pixel bas...
High-dimensional entanglement is a promising resource for quantum technologies. Being able to certif...
In this study of quantum optics, we want to extract information associated with quantum mechanically...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
This article reports the design and characterization of a 32 × 32 single-photon avalanche diode (SPA...