Bell Nonlocality and the Reality of Quantum Wavefunction
arXiv:2005.08577 · doi:10.1103/PhysRevA.104.022217
Abstract
Status of quantum wavefunction is one of the most debated issues in quantum foundations -- whether it corresponds directly to the reality or just represents knowledge or information about some aspect of reality. In this letter we propose a {\it -ontology} theorem that excludes a class of ontological explanations where quantum wavefunction is treated as mere information. Our result, unlike the acclaimed Pusey-Barrett-Rudolph's theorem, does not presume the absence of holistic ontological properties for product quantum preparations. At the core of our derivation we utilize the seminal no-go result by John S. Bell that rules out any local realistic world view for quantum theory. We show that the observed phenomenon of quantum nonlocality cannot be incorporated in a class of -epistemic models. Using the well known Clauser-Horne-Shimony-Holt inequality we obtain a threshold bound on the degree of epistemicity above which the ontological models are not compatible with quantum statistics.
Accepted in Physical Review A (close to accepted version)
References in corpus (6)
- Is the quantum state real? An extended review of -ontology theorems
- Local deterministic model of singlet state correlations based on relaxing measurement independence
- Relaxed Bell inequalities and Kochen-Specker theorems
- Implications of the Pusey-Barrett-Rudolph quantum no-go theorem
- How ψ-epistemic models fail at explaining the indistinguishability of quantum states
- Epistemic view of quantum states and communication complexity of quantum channels