In this work, quantum metrology techniques are applied to the imaging of objects with a nonuniform refractive spatial profile. A sensible improvement on the classical accuracy is shown to be found when the "Twin Beam (TWB) State" is used. In particular, exploiting the multimode spatial correlation, naturally produced in the Parametric Down Conversion (PDC) process, allows a 2D reconstruction of complex spatial profiles, thus enabling an enhanced imaging. The idea is to use one of the spatially multimode beams to probe the sample and the other as a reference to reduce the noise. A similar model can also be used to describe wave front distortion measurements. The model is meant to be followed by a first experimental demonstration of such enha...
Spatial multi-mode quantum optics, also termed « quantum imaging », allows a study of the detection ...
Quantum tomography is the standard method of reconstructing the Wigner function of quantum states of...
Quantum metrology takes advantage of quantum correlations to enhance the sensitivity of sensors and ...
In this work, quantum metrology techniques are applied to the imaging of objects with a nonuniform r...
Twin entangled beams produced by single-pass parametric down-conversion (PDC) offer the opportunity ...
Light is commonly used as a measurement tool in both scientific and everyday applications. It is inc...
Properties of quantum states have disclosed new and revolutionary technologies, ranging from quantum...
The production of pairs of entangled photons simply by focusing a laser beam onto a crystal with a n...
In this thesis I discuss the experimental demonstration of quantum-enhanced imaging and sensing sche...
The process of frequency down-conversion in a nonlinear crystal is known to display strong quantum c...
In this review we present the potentialities and the achievements of the use of non-classical photon...
L'optique quantique multi-mode spatiale, encore appelée imagerie quantique , permet d étudier la dét...
The field of Quantum Imaging exploits the quantum nature of light and the intrinsic parallelism of o...
We report an eight-element, linear-array, single-photon detector that uses multiple fibers of differ...
Exploiting the quantum properties of entangled photon-pairs allows the limits of classical imaging t...
Spatial multi-mode quantum optics, also termed « quantum imaging », allows a study of the detection ...
Quantum tomography is the standard method of reconstructing the Wigner function of quantum states of...
Quantum metrology takes advantage of quantum correlations to enhance the sensitivity of sensors and ...
In this work, quantum metrology techniques are applied to the imaging of objects with a nonuniform r...
Twin entangled beams produced by single-pass parametric down-conversion (PDC) offer the opportunity ...
Light is commonly used as a measurement tool in both scientific and everyday applications. It is inc...
Properties of quantum states have disclosed new and revolutionary technologies, ranging from quantum...
The production of pairs of entangled photons simply by focusing a laser beam onto a crystal with a n...
In this thesis I discuss the experimental demonstration of quantum-enhanced imaging and sensing sche...
The process of frequency down-conversion in a nonlinear crystal is known to display strong quantum c...
In this review we present the potentialities and the achievements of the use of non-classical photon...
L'optique quantique multi-mode spatiale, encore appelée imagerie quantique , permet d étudier la dét...
The field of Quantum Imaging exploits the quantum nature of light and the intrinsic parallelism of o...
We report an eight-element, linear-array, single-photon detector that uses multiple fibers of differ...
Exploiting the quantum properties of entangled photon-pairs allows the limits of classical imaging t...
Spatial multi-mode quantum optics, also termed « quantum imaging », allows a study of the detection ...
Quantum tomography is the standard method of reconstructing the Wigner function of quantum states of...
Quantum metrology takes advantage of quantum correlations to enhance the sensitivity of sensors and ...