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Nonlocal games, synchronous correlations, and Bell inequalities

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arxiv 1707.06200 v4 pith:4VKBTWF3 submitted 2017-07-19 quant-ph

classification quant-ph
keywords correlationssynchronousbellinequalitiesmeasurementprotocolquantumanalogues
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Nonlocal games with synchronous correlations are a natural generalization of functions between two finite sets. In this work we examine analogues of Bell's inequalities for such correlations, and derive a synchronous device-independent quantum key distribution protocol. This protocol has the advantage of symmetry between the two users and self-testing while generating shared secret key without requiring a preshared secret. We show that, unlike general correlations and the CHSH inequality, there can be no quantum Bell violation among synchronous correlations with two measurement settings. However we exhibit explicit analogues of Bell's inequalities for synchronous correlations with three measurement settings and two outputs, provide an analogue of Tsirl'son's bound in this setting, and prove existence and rigidity of quantum correlations that saturate this bound. We conclude by posing a security assumption that bypasses the locality, or causality, loophole and examine the protocol's robustness against measurement error and depolarization noise.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Trading symmetry for Hilbert-space dimension in Bell-inequality violation

    quant-ph 2026-01 conditional novelty 8.0 of 10

    Some symmetric Bell inequalities can only be maximally violated by asymmetric minimal-dimension quantum strategies, while the symmetric CGLMP family admits symmetric maximizers up to dimension 19.

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