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Bell's Theorem and Locally-Mediated Reformulations of Quantum Mechanics

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arxiv 1906.04313 v3 pith:LVHKBM3M submitted 2019-06-10 quant-ph

classification quant-ph
keywords modelsquantumlocally-mediatedparametersassociatedbellmechanicstheorem
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Bell's Theorem rules out many potential reformulations of quantum mechanics, but within a generalized framework, it does not exclude all "locally-mediated" models. Such models describe the correlations between entangled particles as mediated by intermediate parameters which track the particle world-lines and respect Lorentz covariance. These locally-mediated models require the relaxation of an arrow-of-time assumption which is typically taken for granted. Specifically, some of the mediating parameters in these models must functionally depend on measurement settings in their future, i.e., on input parameters associated with later times. This option (often called "retrocausal") has been repeatedly pointed out in the literature, but the exploration of explicit locally-mediated toy-models capable of describing specific entanglement phenomena has begun only in the past decade. A brief survey of such models is included here. These models provide a continuous and consistent description of events associated with spacetime locations, with aspects that are solved "all-at-once" rather than unfolding from the past to the future. The tension between quantum mechanics and relativity which is usually associated with Bell's Theorem does not occur here. Unlike conventional quantum models, the number of parameters needed to specify the state of a system does not grow exponentially with the number of entangled particles. The promise of generalizing such models to account for all quantum phenomena is identified as a grand challenge.

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Cited by 2 Pith papers

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

  1. Bell Correlations and Selection Bias

    quant-ph 2026-05 unverdicted novelty 5.0 of 10

    Bell correlations are selection artefacts induced by sampling methods, removing any tension with relativity or realism.

  2. Taming Entanglement

    quant-ph 2025-07 conditional novelty 5.0 of 10

    EPR and Bell correlations are presented as selection artifacts: preparing the initial quantum state preselects a subensemble of a larger uncorrelated ensemble of possible histories, and the low-entropy past supplies t...

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