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Experimental demonstration of the equivalence of entropic uncertainty with wave-particle duality

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arxiv 2407.03797 v1 pith:AO3XHOB3 submitted 2024-07-04 quant-ph

classification quant-ph
keywords dualityquantumwave-particleentropicequivalenceuncertaintyangulararbitrary
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Wave-particle duality is one of the most striking and counter-intuitive features of quantum mechanics, illustrating that two incompatible observables cannot be measured simultaneously with arbitrary precision. In this work, we experimentally demonstrate the equivalence of wave-particle duality and entropic uncertainty relations using orbital angular momentum (OAM) states of light. Our experiment utilizes an innovative and reconfigurable platform composed of few-mode optical fibers and photonic lanterns, showcasing the versatility of this technology for quantum information processing. Our results provide fundamental insights into the complementarity principle from an informational perspective, with implications for the broader field of 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 of 10

    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.

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