Multiphoton entanglement and interferometry
Многофотонная запутанность и интерферометрия
2012-05-11
SCID: 54.1/q9xaedmz
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linear optics quantum computationmultiphoton entanglementmultiphoton interferencephotonic quantum information processingviolations of local realism
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Abstract (AI)
Multiphoton interference reveals strictly nonclassical phenomena. Its applications range from fundamental tests of quantum mechanics to photonic quantum information processing, where a significant fraction of key experiments achieved so far comes from multiphoton state manipulation. The progress, both theoretical and experimental, of this rapidly advancing research is reviewed. The emphasis is given to the creation of photonic entanglement of various forms, tests of the completeness of quantum mechanics (in particular, violations of local realism), quantum information protocols for quantum communication (e.g., quantum teleportation, entanglement purification, and quantum repeater), and quantum computation with linear optics. The scope of the review is limited to ``few-photon'' phenomena involving measurements of discrete observables.
Key Findings
1
Multiphoton interference exhibits strictly nonclassical phenomena relevant to fundamental quantum tests and applications.
2
Quantum computation with linear optics based on few-photon, discrete-observable measurements is a central focus.
3
Review covers tests of completeness of quantum mechanics, particularly violations of local realism using multiphoton setups.
4
Review emphasizes creation of various forms of photonic entanglement and their experimental progress.
5
Reviewed quantum information protocols include quantum teleportation, entanglement purification, and quantum repeater implementations with photons.
6
Scope is limited to few-photon phenomena involving measurements of discrete observables, excluding continuous-variable or many-photon regimes.
7
Significant portion of key experiments in photonic quantum information processing arise from multiphoton state manipulation.
Research Object
Multiphoton states and multiphoton interference in few-photon photonic systems
Research Subject
Creation and manipulation of photonic entanglement, multiphoton interference effects and their applications to tests of quantum mechanics (violations of local realism), quantum communication protocols (teleportation, entanglement purification, quantum repeaters) and linear-optics quantum computation, focusing on measurements of discrete observables
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2012-05-11
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