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't Hooft G. The Cellular Automaton Interpretation of Quantum Mechanics

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't Hooft G. The Cellular Automaton Interpretation of Quantum Mechanics
Springer International Publishing, 2016 — 298p. — (Fundamental Theories of Physics 185) — ISBN: 978-3-319-41285-6 (eBook), 978-3-319-41284-9 (Hardcover).
This book presents the deterministic view of quantum mechanics developed by Nobel Laureate Gerard 't Hooft.
Dissatisfied with the uncomfortable gaps in the way conventional quantum mechanics meshes with the classical world, 't Hooft has revived the old hidden variable ideas, but now in a much more systematic way than usual. In this, quantum mechanics is viewed as a tool rather than a theory.
The author gives examples of models that are classical in essence, but can be analysed by the use of quantum techniques, and argues that even the Standard Model, together with gravitational interactions, might be viewed as a quantum mechanical approach to analysing a system that could be classical at its core. He shows how this approach, even though it is based on hidden variables, can be plausibly reconciled with Bell's theorem, and how the usual objections voiced against the idea of ‘superdeterminism' can be overcome, at least in principle.
This framework elegantly explains - and automatically cures - the problems of the wave function collapse and the measurement problem. Even the existence of an “arrow of time" can perhaps be explained in a more elegant way than usual. As well as reviewing the author’s earlier work in the field, the book also contains many new observations and calculations. It provides stimulating reading for all physicists working on the foundations of quantum theory.
Motivation for This Work
Deterministic Models in Quantum Notation
Interpreting Quantum Mechanics
Deterministic Quantum Mechanics
Concise Description of the CA Interpretation
Quantum Gravity
Information Loss
More Problems
Alleys to Be Further Investigated and Open Questions
Introduction to Part II
More on Cogwheels
The Continuum Limit of Cogwheels, Harmonic Rotators and Oscillators
Models in Two Space–Time Dimensions Without Interactions
The Discretized Hamiltonian Formalism in
Quantum Field Theory
The Cellular Automaton
The Problem of Quantum Locality
Conclusions of Part II
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