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    Experimental Genuine Quantum Nonlocality in the Triangle Network

    Ning-Ning Wang1,2,3,4, Chao Zhang1,2,3,4,*, Huan Cao5, Kai Xu1,2,3, Bi-Heng Liu1,2,3,4, Yun-Feng Huang1,2,3,4,†, Chuan-Feng Li1,2,3,4,‡, Guang-Can Guo1,2,3,4, Nicolas Gisin6,7 et al.

    Tamás Kriváchy8,9,§ and Marc-Olivier Renou10,∥

    • *Contact author: drzhang.chao@ustc.edu.cn
    • †Contact author: hyf@ustc.edu.cn
    • ‡Contact author: cfli@ustc.edu.cn
    • §Contact author: tamas.krivachy@gmail.com
    • ∥Contact author: marc-olivier.renou@inria.fr

    Phys. Rev. Lett. 136, 180202 – Published 6 May, 2026

    DOI: https://doi.org/10.1103/5hhc-rw3t

    Abstract

    In the last decade, it was understood that quantum networks involving several independent sources of entanglement which are distributed and measured by several parties allowed for completely novel forms of nonclassical quantum correlations, when entangled measurements are performed. Here, we experimentally obtain quantum correlations in a triangle network structure and provide solid evidence of its nonlocality. Specifically, we first obtain the Elegant distribution proposed in [Gisin et al., Entanglement 25 years after quantum teleportation: Testing joint measurements in quantum networks, Entropy 21, 325 (2019)] by performing a six-photon experiment. Then, we justify its nonlocality based on machine learning tools to estimate the distance of the experimentally obtained correlation to the local set.

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