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Loss-based Experimental Test of Bohr's Complementarity Principle with Single Neutral Atom

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arxiv 1608.01450 v2 pith:B6G5OYFP submitted 2016-08-04 quant-ph

Loss-based Experimental Test of Bohr's Complementarity Principle with Single Neutral Atom

classification quant-ph
keywords behaviorcomplementarityexperimentalquantumatominformationinterferenceneutral
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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An experimental test of quantum complementarity principle based on single neutral atom trapped in a blue detuned bottle trap was here performed. A Ramsey interferometer was used to assess the wavelike behavior or particle-like behavior with second $\pi/2$-rotation on or off. The wavelike behavior or particle-like behavior is characterized by the visibility $V$ of the interference or the predictability $P$ of which-path information, respectively. The measured results fulfill the complementarity relation $P^2+V^2\leq1$. Imbalance losses were deliberately introduced to the stem and find the complementarity relation is then formally "violated." All the experimental results can be completely explained theoretically by quantum mechanics without considering the interference between wave and particle behaviors. This observation complements existing information concerning the BCP based on wave-particle duality of massive quantum.

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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.