Testing Higher-Order Quantum Interference with Many-Particle States

Quantum theory permits interference between indistinguishable paths but, at the same time, restricts its order. Single-particle interference, for instance, is limited to the second order, that is, to pairs of single-particle paths. To date, all experimental efforts to search for higher-order interfe...

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Veröffentlicht in:Physical review letters 2021-05, Vol.126 (19), p.1-190401, Article 190401
Hauptverfasser: Pleinert, Marc-Oliver, Rueda, Alfredo, Lutz, Eric, von Zanthier, Joachim
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Sprache:eng
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Zusammenfassung:Quantum theory permits interference between indistinguishable paths but, at the same time, restricts its order. Single-particle interference, for instance, is limited to the second order, that is, to pairs of single-particle paths. To date, all experimental efforts to search for higher-order interferences beyond those compatible with quantum mechanics have been based on such single-particle schemes. However, quantum physics is not bound to single-particle interference. We here experimentally study many-particle higher-order interference using a two-photon-five-slit setup. We observe nonzero two-particle interference up to fourth order, corresponding to the interference of two distinct two-particle paths. We further show that fifth-order interference is restricted to 10−3 in the intensity-correlation regime and to 10−2 in the photon-correlation regime, thus providing novel bounds on higher-order quantum interference.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.126.190401