Unifying hidden-variable problems from quantum mechanics by logics of dependence and independence

ANNALS OF PURE AND APPLIED LOGIC(2022)

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摘要
We study hidden-variable models from quantum mechanics and their abstractions in purely probabilistic and relational frameworks by means of logics of dependence and independence, which are based on team semantics. We show that common desirable properties of hidden-variable models can be defined in an elegant and concise way in dependence and independence logic. The relationship between different properties and their simultaneous realisability can thus be formulated and proven on a purely logical level, as problems of entailment and satisfiability of logical formulae. Connections between probabilistic and relational entailment in dependence and independence logic allow us to simplify proofs. In many cases, we can establish results on both probabilistic and relational hidden-variable models by a single proof, because one case implies the other, depending on purely syntactic criteria. We also discuss the 'no-go' theorems by Bell and Kochen-Specker and provide a purely logical variant of the latter, introducing non-contextual choice as a team-semantical property.(c) 2022 Elsevier B.V. All rights reserved.
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关键词
Team semantics, Dependence logic, Independence logic, Hidden-variables, Non-locality, Kochen-Specker theorem
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