Path-entangled N-photon systems described by NOON states are the main ingredient of many quantum information and quantum imaging protocols. Our analysis aims to lead the way toward the implementation of both NOON-state sources and their applications. To this end, we study the functionality of "real" NOON-state sources by quantifying the effect real experimental apparatuses have on the actual generation of the desired NOON state. In particular, since the conditional generation of NOON states strongly relies on photon counters, we evaluate the dependence of both the reliability and the signal-to-noise ratio of "real" NOON-state sources on detection losses. We find a surprising result: NOON-state sources relying on nondetec...
Quantum state preparation is important for quantum information processing. In particular, in optical...
Quantum protocols, which exploit non-classical correlations produced by quantum light sources, have ...
We review the physical principles behind measurement-based quantum information processing with optic...
Path-entangled N-photon systems described by NOON states are the main ingredient of many quantum inf...
Path-entangled N-photon systems described by NOON states are the main ingredient of many quantum inf...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
The main work done along my PhD is related to entangled states composed of a single photon. This sta...
In this thesis, we demonstrate an array of photodetection theory and techniques bridging the tradit...
[EN] Quantum Illumination is a novel technique which exploits quantum entanglement as a resource to ...
Quantum light sources emitting triggered single photons or entangled photon pairs have the potential...
We experimentally demonstrate a heralded source of high-purity two-photon NOON states derived from h...
Over a century after the modern prediction of the existence of individual particles of light by Albe...
Quantum cryptography or quantum key distribution (QKD) applies fundamental laws of quantum physics t...
We construct a NOON state projection measurement process with only linear optical elements and photo...
We investigate performances of pure continuous variable states in discriminating thermal and identit...
Quantum state preparation is important for quantum information processing. In particular, in optical...
Quantum protocols, which exploit non-classical correlations produced by quantum light sources, have ...
We review the physical principles behind measurement-based quantum information processing with optic...
Path-entangled N-photon systems described by NOON states are the main ingredient of many quantum inf...
Path-entangled N-photon systems described by NOON states are the main ingredient of many quantum inf...
Over the last sixty years, classical information theory has revolutionized the understanding of the ...
The main work done along my PhD is related to entangled states composed of a single photon. This sta...
In this thesis, we demonstrate an array of photodetection theory and techniques bridging the tradit...
[EN] Quantum Illumination is a novel technique which exploits quantum entanglement as a resource to ...
Quantum light sources emitting triggered single photons or entangled photon pairs have the potential...
We experimentally demonstrate a heralded source of high-purity two-photon NOON states derived from h...
Over a century after the modern prediction of the existence of individual particles of light by Albe...
Quantum cryptography or quantum key distribution (QKD) applies fundamental laws of quantum physics t...
We construct a NOON state projection measurement process with only linear optical elements and photo...
We investigate performances of pure continuous variable states in discriminating thermal and identit...
Quantum state preparation is important for quantum information processing. In particular, in optical...
Quantum protocols, which exploit non-classical correlations produced by quantum light sources, have ...
We review the physical principles behind measurement-based quantum information processing with optic...