Journal of the Optical Society of America B · 2023 · 42 citations · 112 references
EngineeringFiber OpticsFiber-optic CommunicationOptical PropertiesQuantum EntanglementOptical SystemsFiber LaserPhotonicsQuantum SciencePhysicsWavelength ConversionOptical FibersClassical OpticsOptical Fiber TechnologyFiber OpticNatural SciencesApplied PhysicsFiber-based Photon-pair GenerationOptoelectronicsFibre AmplifierSfwm Bandwidth Control
The purpose of this tutorial paper is to present a broad overview of photon-pair generation through the spontaneous four wave mixing (SFWM) process in optical fibers. Progress in optical fiber technology means that today we have at our disposal a wide variety of types of fiber, which, together with the fact that SFWM uses two pump fields, implies a truly remarkable versatility in the resulting possible photon-pair properties. We discuss how the interplay of frequency, transverse mode, and polarization degrees of freedom—the first linked to the latter two through fiber dispersion—leads to interesting entanglement properties both in individual degrees of freedom and also permitting hybrid and hyper entanglement in combinations of degrees of freedom. This tutorial covers methods for photon-pair factorability, frequency tunability, and SFWM bandwidth control, the effect of frequency non-degenerate and counterpropagating pumps, as well as methods for characterizing photon pairs generated in optical fibers.
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Computable measure of entanglement
Guifré Vidal, Reinhard F. Werner · Physical Review A · 2002 · 4.8K citations · Full text
Arbitrary Bipartite System, Quantum Science, Mixed State +14
Heralded Generation of Ultrafast Single Photons in Pure Quantum States
Peter J. Mosley, Jeff S. Lundeen, Brian J. Smith et al. · Physical Review Letters · 2008 · 624 citations · Full text