The Bell inequality, inviolable by data used consistently with its
derivation, leads to quantum correlations that satisfy it, and probabilities
that satisfy the Wigner inequality
- URL: http://arxiv.org/abs/2102.13227v2
- Date: Sun, 8 Jan 2023 23:10:59 GMT
- Title: The Bell inequality, inviolable by data used consistently with its
derivation, leads to quantum correlations that satisfy it, and probabilities
that satisfy the Wigner inequality
- Authors: Louis Sica
- Abstract summary: The inequality that Bell derived using three random variables must be identically satisfied by any three corresponding data sets of plus and minus 1s.
For laboratory data, the inequality is identically satisfied as a fact of pure algebra.
If predicted correlations violate the inequality, they represent no three cross correlated data sets that experimentally exist or can be generated from valid probability models.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: It is not generally known, that the inequality that Bell derived using three
random variables must be identically satisfied by any three corresponding data
sets of plus and minus 1s that are writable on paper.This surprising fact is
not immediately obvious from Bell's inequality derivation based on causal
random variables, but follows immediately if the same mathematical operations
are applied to finite data sets.For laboratory data, the inequality is
identically satisfied as a fact of pure algebra, and its satisfaction is
independent of whether the processes generating the data are local, nonlocal,
deterministic, random, or nonsensical.It follows that if predicted correlations
violate the inequality, they represent no three cross correlated data sets that
experimentally exist or can be generated from valid probability models.
Reported data that violate the inequality consist of probabilistically
independent data pairs and are thus inconsistent with inequality derivation.In
the case of random variables as Bell assumed, the correlations in the
inequality may be expressed in terms of the probabilities that give rise to
them.A new inequality results, the Wigner inequality that must be satisfied by
quantum mechanical probabilities in the case of Bell experiments.If that were
not the case, predicted quantum probabilities and correlations would be
inconsistent with basic algebra.
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