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Complementary contributions of indeterminism and signalling to quantum correlations

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arxiv 1006.3680 v4 pith:4XTJ4A4C submitted 2010-06-18 quant-ph

classification quant-ph
keywords signallingcomplementaryindeterminismprobabilityunderlyingviolationbitsbound
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abstract

Simple quantitative measures of indeterminism and signalling, $I$ and $S$, are defined for models of statistical correlations. It is shown that any such model satisfies a generalised Bell-type inequality, with tight upper bound B(I,S). This upper bound explicitly quantifies the complementary contributions required from indeterminism and signalling, for modelling any given violation of the standard Bell-CHSH inequality. For example, all models of the maximum quantum violation must either assign no more than 80% probability of occurrence to some underlying event, and/or allow a nonlocal change of at least 60% in an underlying marginal probability of one observer in response to a change in measurement setting by a distant observer. The results yield a corresponding complementarity relation between the numbers of local random bits and nonlocal signalling bits required to model a given violation. A stronger relation is conjectured for simulations of singlet states. Signalling appears to be a useful resource only if a `gap' condition is satisfied, corresponding to being able to nonlocally flip some underlying marginal probability $p$ to its complementary value 1-p.

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  1. Closing objectivity loophole in Bell tests on a public quantum computer

    quant-ph 2025-06 conditional novelty 4.0 of 10

    A three-observer unanimity Bell test on IBM and IonQ devices violates CHSH in several qubit groups while also revealing statistically significant signaling.

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