Vittorio Giovannetti focuses on Quantum mechanics, Quantum, Quantum information, Quantum entanglement and Statistical physics. Quantum information science is closely connected to Topology in his research, which is encompassed under the umbrella topic of Quantum mechanics. His work carried out in the field of Quantum brings together such families of science as Gaussian channels, Measure, Optimal control and Conjecture.
His research in Quantum information intersects with topics in Qubit, Trace distance, Quantum limit, Function and Gaussian. His Quantum entanglement research includes themes of Polarization, Optics, Photon and Quantum statistical mechanics. The Statistical physics study combines topics in areas such as Noise, Quantum metrology, Heisenberg limit and Landauer's principle.
Quantum mechanics, Quantum, Statistical physics, Quantum entanglement and Quantum information are his primary areas of study. His work in Quantum capacity, Amplitude damping channel, Quantum information science, Quantum channel and Classical capacity are all subfields of Quantum mechanics research. His Quantum study combines topics from a wide range of disciplines, such as Thermal, Gaussian and Topology.
His Statistical physics research is multidisciplinary, incorporating elements of Noise, Upper and lower bounds and Markov process. Vittorio Giovannetti combines subjects such as Quantum optics and Classical mechanics with his study of Quantum entanglement. His Quantum network research incorporates themes from Open quantum system and Quantum algorithm.
Vittorio Giovannetti mainly focuses on Quantum, Statistical physics, Qubit, Topology and Thermal. His research on Quantum concerns the broader Quantum mechanics. His Statistical physics study integrates concerns from other disciplines, such as Non-equilibrium thermodynamics, Noise, Energy and Work.
The various areas that Vittorio Giovannetti examines in his Qubit study include Dimension, State and Quantum state. His studies deal with areas such as Gaussian, Photon, Superconductivity, Cooper pair and Degrees of freedom as well as Topology. His Thermal study incorporates themes from Quantum system, Heat engine, Carnot cycle, Hamiltonian and Maximum power principle.
Quantum, Statistical physics, Topology, Qubit and Photon are his primary areas of study. His Quantum study contributes to a more complete understanding of Quantum mechanics. His Statistical physics research is multidisciplinary, incorporating perspectives in Non-equilibrium thermodynamics, Clausius theorem, Energy and Open quantum system.
His Topology research includes elements of Quantum entanglement, Andreev reflection, Gaussian and Topological insulator. His study in Qubit is interdisciplinary in nature, drawing from both Quantum capacity, Noise, Quantum computer, Quantum state and Attenuation. Vittorio Giovannetti has researched Photon in several fields, including Electronic circuit, Quantum metrology and Single-mode optical fiber.
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Advances in quantum metrology
Vittorio Giovannetti;Seth Lloyd;Lorenzo Maccone.
Nature Photonics (2011)
Quantum-enhanced measurements: beating the standard quantum limit.
Vittorio Giovannetti;Seth Lloyd;Lorenzo Maccone.
Science (2004)
Quantum metrology
Vittorio Giovannetti;Seth Lloyd;Lorenzo Maccone.
Physical Review Letters (2005)
Entangling macroscopic oscillators exploiting radiation pressure
Stefano Mancini;Stefano Mancini;Vittorio Giovannetti;David Vitali;Paolo Tombesi.
Physical Review Letters (2002)
Quantum random access memory.
Vittorio Giovannetti;Seth Lloyd;Lorenzo Maccone.
Physical Review Letters (2008)
Quantum Illumination with Gaussian States
Si Hui Tan;Baris I. Erkmen;Vittorio Giovannetti;Saikat Guha.
Physical Review Letters (2008)
Quantum-enhanced positioning and clock synchronization
Vittorio Giovannetti;Seth Lloyd;Lorenzo Maccone.
Nature (2001)
Phase noise measurement in a cavity with a movable mirror undergoing quantum Brownian motion
Vittorio Giovannetti;David Vitali.
Physical Review A (2001)
High-fidelity quantum driving
Mark G. Bason;Matthieu Viteau;Nicola Malossi;Paul Huillery.
Nature Physics (2012)
Anderson localization of entangled photons in an integrated quantum walk
Andrea Crespi;Roberto Osellame;Roberta Ramponi;Vittorio Giovannetti.
Nature Photonics (2013)
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