Bell argument: Locality or Realism? Time to make the choice
arXiv:1108.0001 · doi:10.1063/1.3688967
Abstract
This paper discusses a possible resolution of the nonobjectivity-nonlocality dilemma in quantum mechanics in 'the light of experimental tests of the Bell inequality for two entangled photons and a Bell-like inequality for a single neutron. My conclusion is that these experiments show that quantum mechanics is nonobjective: that is, the values of physical observables cannot be assigned to a system before measurement. Bell's assumption of nonlocality has to be rejected as having no direct experimental confirmation, at least thus far. I also consider the relationships between nonobjectivity and contextuality. Specifically, I analyze the impact of the Kochen-Specker theorem on the problem of contextuality of quantum observables. I argue that, just as von Neumann's "no-go" theorem, the Kochen-Specker theorem is based on assumptions that do not correspond to the real physical situation. Finally, I present a theory of measurement based on a classical, purely wave model (pre-quantum classical statistical field theory), a model that reproduces quantum probabilities. In this model continuous fields are transformed into discrete clicks of detectors. While this model is classical, it is nonobjective. In this case, nonobjectivity is the result of the dependence of experimental outcomes on the context of measurement, in accordance with Bohr's view.
English and presentation were improved; citation of the arxiv-preprint of C. Fuchs on inter-relation of locality and objectivity in Bell's theorem. arXiv admin note: substantial text overlap with arXiv:1105.4269
References in corpus (9)
- State-independent experimental test of quantum contextuality
- Quantum Mechanics as Quantum Information (and only a little more)
- Quantum-Bayesian Coherence: The No-Nonsense Version
- Is the Fair Sampling Assumption supported by EPR Experiments?
- Bell's theorem: Critique of proofs with and without inequalities
- Delirium Quantum
- Local Instruction-Set Model for the Experiment of Pan et al
- An analog of Heisenberg uncertainty relation in prequantum classical field theory
- Växjö interpretation-2003: realism of contexts
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- Quantum Non-Objectivity from Performativity of Quantum Phenomena
- Bell's nonlocality in a general nonsignaling case: quantitatively and conceptually
- Quantum postulate vs. quantum nonlocality: Is Devil in h?
- Towards experiments to test violation of the original Bell inequality
- Context-invariant and local quasi hidden variable (qHV) modelling versus contextual and nonlocal HV modelling
- Violation of Bell Inequalities: Mapping the Conceptual Implications