Single-photon avalanche diode (SPAD) arrays are essential tools in biophotonics, optical ranging and sensing, and quantum optics. However, their small number of pixels, low quantum efficiency, and small fill factor have so far hindered their use for practical imaging applications. Here, we demonstrate full-field entangled photon-pair correlation imaging using a 100-kpixel SPAD camera. By measuring photon coincidences between more than 500 million pairs of positions, we retrieve the full point spread function of the imaging system and subsequently high-resolution images of target objects illuminated by spatially entangled photon pairs. We show that our imaging approach is robust against stray light, enabling quantum imaging technologies to m...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
The light produced by parametric down-conversion shows strong spatial entanglement that leads to vio...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
Quantum technology promises improvements in imaging, computing, and communication, for example using...
Spatial correlations between two photons are the key resource in realising many quantum imaging sche...
We present a novel quantum imaging modality based on photon correlation measurement with a single ph...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
The emerging field of quantum imaging introduces new methods to overcome classical limitations in op...
Pixelation occurs in many imaging systems and limits the spatial resolution of the acquired images. ...
In this paper, a 100x100 CMOS Single Photon Avalanche Diode (SPAD) array designed for quantum imagin...
Quantum imaging uses entangled photons to overcome the limits of a classical-light apparatus in term...
Entangled photons have the remarkable ability to be more sensitive to signal and less sensitive to n...
Quantum techniques are commonly used to enhance measurement performance in many fields, such as imag...
Single photon avalanche diode arrays can provide both the spatial and temporal information of each d...
Quantum microscopy requires efficient detectors able to identify temporal correlations among photons...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
The light produced by parametric down-conversion shows strong spatial entanglement that leads to vio...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
Quantum technology promises improvements in imaging, computing, and communication, for example using...
Spatial correlations between two photons are the key resource in realising many quantum imaging sche...
We present a novel quantum imaging modality based on photon correlation measurement with a single ph...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
The emerging field of quantum imaging introduces new methods to overcome classical limitations in op...
Pixelation occurs in many imaging systems and limits the spatial resolution of the acquired images. ...
In this paper, a 100x100 CMOS Single Photon Avalanche Diode (SPAD) array designed for quantum imagin...
Quantum imaging uses entangled photons to overcome the limits of a classical-light apparatus in term...
Entangled photons have the remarkable ability to be more sensitive to signal and less sensitive to n...
Quantum techniques are commonly used to enhance measurement performance in many fields, such as imag...
Single photon avalanche diode arrays can provide both the spatial and temporal information of each d...
Quantum microscopy requires efficient detectors able to identify temporal correlations among photons...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
The light produced by parametric down-conversion shows strong spatial entanglement that leads to vio...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...