We present the first experimental demonstration of quantum enhanced detection at x-ray wavelengths. We show that x-ray pairs that are generated by spontaneous down-conversion can be used for the generation of heralded x-ray photons and directly measure the sub-Poissonian statistics of the single photons by using photon number resolving detectors. We utilize the properties of the strong time-energy correlations of the down-converted photons to demonstrate the ability to improve the visibility and the signal-to-noise ratio of an image with a small number of photons in an environment with a noise level that is higher than the signal by many orders of magnitude. A long-term goal of this work is to demonstrate x-ray photon entanglement. However,...
Exploiting the quantum properties of entangled photon-pairs allows the limits of classical imaging t...
The production of pairs of entangled photons simply by focusing a laser beam onto a crystal with a n...
The field of Quantum Imaging exploits the quantum nature of light and the intrinsic parallelism of o...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
In this review we present the potentialities and the achievements of the use of non-classical photon...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
X-ray quantum optics has, so far, taken only a peripheral role in contemporary research. A few impor...
Quantum imaging with sub-Poissonian light: challenges and perspectives in optical metrology Non-cla...
The process of frequency down-conversion in a nonlinear crystal is known to display strong quantum c...
Quantum techniques are commonly used to enhance measurement performance in many fields, such as imag...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
In this work we investigate quantum-enhanced target detection in the presence of large background no...
We image quantum correlations arising from parametric downconversion with a single-photon sensitive ...
Spontaneous parametric down-conversion (SPDC)of a visible pump photon is the generation of two less ...
Non-classical correlations in optical beams offer the unprecedented opportunity of surpassing conven...
Exploiting the quantum properties of entangled photon-pairs allows the limits of classical imaging t...
The production of pairs of entangled photons simply by focusing a laser beam onto a crystal with a n...
The field of Quantum Imaging exploits the quantum nature of light and the intrinsic parallelism of o...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
In this review we present the potentialities and the achievements of the use of non-classical photon...
To evidence multimode spatial entanglement of spontaneous down-conversion, detector arrays allow a f...
X-ray quantum optics has, so far, taken only a peripheral role in contemporary research. A few impor...
Quantum imaging with sub-Poissonian light: challenges and perspectives in optical metrology Non-cla...
The process of frequency down-conversion in a nonlinear crystal is known to display strong quantum c...
Quantum techniques are commonly used to enhance measurement performance in many fields, such as imag...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
In this work we investigate quantum-enhanced target detection in the presence of large background no...
We image quantum correlations arising from parametric downconversion with a single-photon sensitive ...
Spontaneous parametric down-conversion (SPDC)of a visible pump photon is the generation of two less ...
Non-classical correlations in optical beams offer the unprecedented opportunity of surpassing conven...
Exploiting the quantum properties of entangled photon-pairs allows the limits of classical imaging t...
The production of pairs of entangled photons simply by focusing a laser beam onto a crystal with a n...
The field of Quantum Imaging exploits the quantum nature of light and the intrinsic parallelism of o...