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Experimental Test of Relation between Coherence and Path Information

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arxiv 1703.08026 v2 pith:Y25UPMOP submitted 2017-03-23 quant-ph

Experimental Test of Relation between Coherence and Path Information

classification quant-ph
keywords coherencequantumdualityinformationpathrelationfundamentalphoton
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum coherence stemming from the superposition behaviour of a particle beyond the classical realm, serves as one of the most fundamental features in quantum mechanics. The wave-particle duality phenomenon, which shares the same origin, has a strong relationship with quantum coherence. Recently, an elegant relation between quantum coherence and path information has been theoretically derived. Here, we experimentally test such new duality by l1-norm measure and the minimum-error state discrimination. We prepare three classes of two-photon states encoded in polarisation degree of freedom, with one photon serving as the target and the other photon as the detector. We observe that wave-particle-like complementarity and Bagan's equality, defined by the duality relation between coherence and path information, is well satisfied. Our results may shed new light on the original nature of wave-particle duality and on the applications of quantum coherence as a fundamental resource in quantum technologies.

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  1. Trade-off between predictability and quantum coherence for multi-path interferometry and its operational interpretation

    quant-ph 2026-07 conditional novelty 6.0

    Predictability defined via Bures distance is exactly complementary to Kirkwood–Dirac coherence for pure states and gives a min-entropy bound for classically-labelled sources.