Affiliation:
1. Program in Cosmology and Gravity of CIAR, Department of Physics and Astronomy, University of B.C., Vancouver, V6T 1Z1, Canada
Abstract
The debate about the non-locality of quantum mechanics is old, but still lively. Numerous people use non-locality as (bad) shorthand for quantum entanglement. But some have a long-standing commitment to the validity of this characterization. This paper examines two separate streams in this debate. The first is the arguments of Stapp, and especially his recent paper where he simplifies his contractual argument in the Hardy situation to argue for the non-locality of quantum mechanics. He has maintained his contention that an analysis of a Hardy-type correlation between two spatially separated observers proves that quantum mechanics itself is non-local, without any additional assumption of realism or hidden variables. In the second section, I try to carefully examine the Bell argument in the CHSH variant to see where the difference between the quantum and classical situations differ. Asher Peres was one of the great physicists of the late 20th century, especially for his intense concern with the fundamental nature of quantum mechanics. His courage in devoting his life to an area many considered "philosophical" (i.e. non-physical) paved the way for the rest of us to reveal our interests and confusions about this area. I am not sure that he would agree with everything in this paper, but I offer it as a tribute to him.
Publisher
World Scientific Pub Co Pte Lt
Subject
Physics and Astronomy (miscellaneous)
Cited by
4 articles.
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1. Locality and quantum mechanics;Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences;2018-05-28
2. On generalized entropies and information-theoretic Bell inequalities under decoherence;Annals of Physics;2015-04
3. Minkowski Space-Time and Quantum Mechanics;Minkowski Spacetime: A Hundred Years Later;2009-11-21
4. Classical statistical distributions can violate Bell-type inequalities;Journal of Physics A: Mathematical and Theoretical;2008-02-12