The emerging field of quantum imaging introduces new methods to overcome classical limitations in optical microscopy. A detection apparatus capable of analyzing the quantum signature of light, is a crucial component in the heart of any such method. We present a novel quantum imaging modality, based on a state-of-the-art single photon avalanche diode (SPAD) array in a confocal setup. This modality enables unprecedented simplicity and scalability in imaging temporal photon correlations. We demonstrate the potential of this approach by measuring temporal correlations of classical and quantum sources, as well as demonstrate a quantum super-resolution technique
Aim of the paper is to discuss design, fabrication and performances of Single-Photon Avalanche Diode...
sCMOS imagers are currently utilized (replacing EMCCD imagers) to increase the acquisition speed in ...
The ability to generate and handle quantum correlations in twin-beam states is the foundation to ove...
We present a novel quantum imaging modality based on photon correlation measurement with a single ph...
Quantum techniques are commonly used to enhance measurement performance in many fields, such as imag...
In this paper, a 100x100 CMOS Single Photon Avalanche Diode (SPAD) array designed for quantum imagin...
Single-photon avalanche diode (SPAD) arrays are essential tools in biophotonics, optical ranging and...
Quantum imaging uses entangled photons to overcome the limits of a classical-light apparatus in term...
Microscopy resolution below the diffraction limit can be achieved by exploiting quantum light proper...
Quantum technology promises improvements in imaging, computing, and communication, for example using...
Quantum microscopy requires efficient detectors able to identify temporal correlations among photons...
Non-classical correlations in optical beams offer the unprecedented opportunity of surpassing conven...
Aim of the paper is to discuss design, fabrication and performances of Single-Photon Avalanche Diode...
sCMOS imagers are currently utilized (replacing EMCCD imagers) to increase the acquisition speed in ...
The ability to generate and handle quantum correlations in twin-beam states is the foundation to ove...
We present a novel quantum imaging modality based on photon correlation measurement with a single ph...
Quantum techniques are commonly used to enhance measurement performance in many fields, such as imag...
In this paper, a 100x100 CMOS Single Photon Avalanche Diode (SPAD) array designed for quantum imagin...
Single-photon avalanche diode (SPAD) arrays are essential tools in biophotonics, optical ranging and...
Quantum imaging uses entangled photons to overcome the limits of a classical-light apparatus in term...
Microscopy resolution below the diffraction limit can be achieved by exploiting quantum light proper...
Quantum technology promises improvements in imaging, computing, and communication, for example using...
Quantum microscopy requires efficient detectors able to identify temporal correlations among photons...
Non-classical correlations in optical beams offer the unprecedented opportunity of surpassing conven...
Aim of the paper is to discuss design, fabrication and performances of Single-Photon Avalanche Diode...
sCMOS imagers are currently utilized (replacing EMCCD imagers) to increase the acquisition speed in ...
The ability to generate and handle quantum correlations in twin-beam states is the foundation to ove...