Quantum vortices of strongly interacting photons

Vortices are topologically nontrivial defects that generally originate from nonlinear field dynamics. All-optical generation of photonic vortices-phase singularities of the electromagnetic field-requires sufficiently strong nonlinearity that is typically achieved in the classical optics regime. We r...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2023-07, Vol.381 (6654), p.193-198
Hauptverfasser: Drori, Lee, Das, Bankim Chandra, Zohar, Tomer Danino, Winer, Gal, Poem, Eilon, Poddubny, Alexander, Firstenberg, Ofer
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Sprache:eng
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Zusammenfassung:Vortices are topologically nontrivial defects that generally originate from nonlinear field dynamics. All-optical generation of photonic vortices-phase singularities of the electromagnetic field-requires sufficiently strong nonlinearity that is typically achieved in the classical optics regime. We report on the realization of quantum vortices of photons that result from a strong photon-photon interaction in a quantum nonlinear optical medium. The interaction causes faster phase accumulation for copropagating photons, producing a quantum vortex-antivortex pair within the two-photon wave function. For three photons, the formation of vortex lines and a central vortex ring confirms the existence of a genuine three-photon interaction. The wave function topology, governed by two- and three-photon bound states, imposes a conditional phase shift of π per photon, a potential resource for deterministic quantum logic operations.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.adh5315