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Single-photon nonlocality in quantum networks

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arxiv 2108.01726 v3 pith:AD6PHK36 submitted 2021-08-03 quant-ph physics.optics

Single-photon nonlocality in quantum networks

classification quant-ph physics.optics
keywords single-photonquantumentanglednonlocalitycorrelationsmadenetworknonlocal
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The state obtained when a single photon impinges on a balanced beamsplitter is often known as single-photon entangled and its nonlocal properties have been the subject of intense debates in the quantum optics and foundations communities. It is however clear that a standard Bell test made only of passive optical elements cannot reveal the nonlocality of this state. We show that the nonlocality of single-photon entangled states can nevertheless be revealed in a quantum network made only of beamsplitters and photodetectors. In our protocol, three single-photon entangled states are distributed in a triangle network, introducing indeterminacy in the photons' paths and creating nonlocal correlations without the need for measurements choices. We discuss a concrete experimental realisation and provide numerical evidence of the tolerance of our protocol to standard noise sources. Our results show that single-photon entanglement may constitute a promising solution to generate genuine network-nonlocal correlations useful for Bell-based quantum information protocols.

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  1. The minimal example of quantum network Bell nonlocality

    quant-ph 2026-05 unverdicted novelty 8.0

    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.