Quantum nonlocality is possible in the triangle network with no inputs and binary outputs, which is the smallest such scenario by number of variables and outcomes.
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Quantum entangled measurements achieve a four-party correlation impossible under wirings of nonsignaling boxes in networks where every pair shares such a box.
Separable measurements augmented with classical feedforward suffice to certify full network nonlocality and minimal network nonclassicality while enabling device-independent randomness quantification.
citing papers explorer
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The minimal example of quantum network Bell nonlocality
Quantum nonlocality is possible in the triangle network with no inputs and binary outputs, which is the smallest such scenario by number of variables and outcomes.
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Quantum Advantage over Wirings of Nonsignaling Boxes in Multipartite Networks
Quantum entangled measurements achieve a four-party correlation impossible under wirings of nonsignaling boxes in networks where every pair shares such a box.
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Network Nonlocality with Separable Measurements
Separable measurements augmented with classical feedforward suffice to certify full network nonlocality and minimal network nonclassicality while enabling device-independent randomness quantification.