His primary scientific interests are in Photon, Quantum mechanics, Quantum information, Quantum optics and Photonics. His Photon research focuses on Quantum entanglement and how it relates to Polarization and Optical polarization. His is doing research in Quantum technology, Qubit, Quantum error correction, Orbital angular momentum of light and Quantum walk, both of which are found in Quantum mechanics.
As a member of one scientific family, Fabio Sciarrino mostly works in the field of Quantum technology, focusing on Quantum network and, on occasion, Open quantum system. His studies examine the connections between Quantum optics and genetics, as well as such issues in Boson, with regards to Acoustics, Integrated optics and Computation. Fabio Sciarrino combines subjects such as Electronic circuit, Laser, Femtosecond, Quantum state and Electronic engineering with his study of Photonics.
His main research concerns Quantum mechanics, Quantum, Photon, Quantum information and Quantum network. His studies in Qubit, Quantum entanglement, Quantum channel, Quantum state and Quantum cloning are all subfields of Quantum mechanics research. His work in Quantum tackles topics such as Boson which are related to areas like Computer engineering.
His Photon research incorporates elements of Photonics, Optical parametric amplifier, Spontaneous parametric down-conversion, Polarization and Astronomical interferometer. His Quantum information research is multidisciplinary, incorporating elements of Theoretical physics, Quantum optics and Topology. His biological study spans a wide range of topics, including Quantum nonlocality, Open quantum system, Quantum algorithm, Quantum error correction and Quantum information science.
Fabio Sciarrino spends much of his time researching Quantum, Photonics, Photon, Quantum entanglement and Quantum technology. His Quantum research integrates issues from Physical system, Interference and Algorithm. His Interference research is under the purview of Quantum mechanics.
Fabio Sciarrino has researched Photon in several fields, including Quantum channel and Nuclear physics. In Quantum entanglement, Fabio Sciarrino works on issues like Topology, which are connected to Quantum walk, Quantum information, Hidden variable theory and Cryptography. His Quantum technology research is multidisciplinary, relying on both Boson and Electronic engineering.
His main research concerns Quantum, Photonics, Algorithm, Photon and Quantum state. His Quantum research is multidisciplinary, incorporating perspectives in Field, Physical system, Causal structure and Interference. Physical system is a subfield of Quantum mechanics that Fabio Sciarrino explores.
The study incorporates disciplines such as Optical polarization, Quantum technology, Electronic engineering and Angular momentum in addition to Photonics. His biological study deals with issues like Metrology, which deal with fields such as Quantum metrology and Quantum sensor. His Photon study combines topics from a wide range of disciplines, such as Quantum channel and Nuclear physics.
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Integrated multimode interferometers with arbitrary designs for photonic boson sampling
Andrea Crespi;Roberto Osellame;Roberta Ramponi;Daniel J. Brod.
Nature Photonics (2013)
Two-Particle Bosonic-Fermionic Quantum Walk via Integrated Photonics
Linda Sansoni;Fabio Sciarrino;Giuseppe Vallone;Paolo Mataloni.
Physical Review Letters (2012)
Integrated photonic quantum technologies
Jianwei Wang;Fabio Sciarrino;Anthony Laing;Mark G. Thompson.
Nature Photonics (2020)
Spin-to-orbital conversion of the angular momentum of light and its classical and quantum applications
Lorenzo Marrucci;Ebrahim Karimi;Sergei Slussarenko;Bruno Piccirillo.
Journal of Optics (2011)
Anderson localization of entangled photons in an integrated quantum walk
Andrea Crespi;Roberto Osellame;Roberta Ramponi;Vittorio Giovannetti.
Nature Photonics (2013)
Quantum Information Transfer from Spin to Orbital Angular Momentum of Photons
Eleonora Nagali;Fabio Sciarrino;Francesco De Martini;Francesco De Martini;Lorenzo Marrucci.
Physical Review Letters (2009)
Free-space quantum key distribution by rotation-invariant twisted photons.
Giuseppe Vallone;Vincenzo D'Ambrosio;Anna Sponselli;Sergei Slussarenko.
Physical Review Letters (2014)
Integrated photonic quantum gates for polarization qubits
Andrea Crespi;Roberta Ramponi;Roberta Ramponi;Roberto Osellame;Roberto Osellame;Linda Sansoni.
Nature Communications (2011)
Experimental validation of photonic boson sampling
Nicolò Spagnolo;Chiara Vitelli;Chiara Vitelli;Marco Bentivegna;Daniel J. Brod.
Nature Photonics (2014)
Polarization entangled state measurement on a chip
Linda Sansoni;Fabio Sciarrino;Giuseppe Vallone;Paolo Mataloni.
conference on lasers and electro-optics (2011)
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