Models on the boundary between classical and quantum mechanics

Publication date

2015-08-06

Authors

’t Hooft, GerardISNI 0000000121429592

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Arguments that quantum mechanics cannot be explained in terms of any classical theory using only classical logic seem to be based on sound mathematical considerations: there cannot be physical laws that require 'conspiracy'. It may therefore be surprising that there are several explicit quantum systems where these considerations apparently do not apply. In this report, several such counterexamples are shown. These are quantum models that do have a classical origin. The most curious of these models is superstring theory. So now the question is asked: how can such a model feature 'conspiracy', and how bad is that? Is there conspiracy in the vacuum fluctuations? Arguments concerning Bell's theorem are further sharpened.

Keywords

hidden variables, superdeterminism, Bell's theorem, mappings, edge states, vacuum fluctuations, STATE, Taverne

Citation

't Hooft, G 2015, 'Models on the boundary between classical and quantum mechanics', Philosophical Transactions of the Royal Society. Mathematical, Physical and Engineering Sciences, vol. 373, no. 2047, 20140236. https://doi.org/10.1098/rsta.2014.0236