Imaging with quantum states of light promises advantages over classical approaches in terms of resolution, signal-to-noise ratio, and sensitivity. However, quantum detectors are particularly sensitive sources of classical noise that can reduce or cancel any quantum advantage in the final result. Without operating in the single-photon counting regime, we experimentally demonstrate distillation of a quantum image from measured data composed of a superposition of both quantum and classical light. We measure the image of an object formed under quantum illumination (correlated photons) that is mixed with another image produced by classical light (uncorrelated photons) with the same spectrum and polarization, and we demonstrate near-perfect separ...
In this review we present the potentialities and the achievements of the use of non-classical photon...
Quantum correlation of two-photon states has been utilized to suppress the environmental noise in im...
The theory of partial coherence has a long and storied history in classical statistical optics. The ...
Imaging based on the induced coherence effect makes use of photon pairs to obtain information of an ...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
The production of pairs of entangled photons simply by focusing a laser beam onto a crystal with a n...
How can quantum mechanics deliver better imaging performance? Parametric down-conversion sources pro...
We implement a general imaging method by measuring the complex degree of coherence using linear opti...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
Coincidence, or ghost, imaging is a technique that uses two correlated optical fields to form an ima...
Entangled photons have the remarkable ability to be more sensitive to signal and less sensitive to n...
In this paper, we propose a novel quantum-secured single-pixel imaging method that utilizes non-clas...
Estimating the angular separation between two incoherent thermal sources is a challenging task for d...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
Exploiting the quantum properties of entangled photon-pairs allows the limits of classical imaging t...
In this review we present the potentialities and the achievements of the use of non-classical photon...
Quantum correlation of two-photon states has been utilized to suppress the environmental noise in im...
The theory of partial coherence has a long and storied history in classical statistical optics. The ...
Imaging based on the induced coherence effect makes use of photon pairs to obtain information of an ...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
The production of pairs of entangled photons simply by focusing a laser beam onto a crystal with a n...
How can quantum mechanics deliver better imaging performance? Parametric down-conversion sources pro...
We implement a general imaging method by measuring the complex degree of coherence using linear opti...
Quantum Entanglement is widely regarded as one of the most prominent features of quantum mechanics a...
Coincidence, or ghost, imaging is a technique that uses two correlated optical fields to form an ima...
Entangled photons have the remarkable ability to be more sensitive to signal and less sensitive to n...
In this paper, we propose a novel quantum-secured single-pixel imaging method that utilizes non-clas...
Estimating the angular separation between two incoherent thermal sources is a challenging task for d...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
Exploiting the quantum properties of entangled photon-pairs allows the limits of classical imaging t...
In this review we present the potentialities and the achievements of the use of non-classical photon...
Quantum correlation of two-photon states has been utilized to suppress the environmental noise in im...
The theory of partial coherence has a long and storied history in classical statistical optics. The ...