Quantum Inflation of Classical Shapes

Foundations of Physics 47 (5):625-639 (2017)
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Abstract

I consider a quantum system that possesses key features of quantum shape dynamics and show that the evolution of wave-packets will become increasingly classical at late times and tend to evolve more and more like an expanding classical system. At early times however, semiclassical effects become large and lead to an exponential mismatch of the apparent scale as compared to the expected classical evolution of the scale degree of freedom. This quantum inflation of an emergent and effectively classical system, occurs naturally in the quantum shape dynamics description of the system, while it is unclear whether and how it might arise in a constrained Hamiltonian quantization.

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Tim Koslowski
University of Würzburg

References found in this work

Quantum Gravity.Carlo Rovelli - 2007 - Cambridge University Press.
Mach's principle and the structure of dynamical theories.Julian B. Barbour & Bruno Bertotti - 1982 - Proceedings of the Royal Society, London:295--306.
The Definition of Mach’s Principle.Julian Barbour - 2010 - Foundations of Physics 40 (9-10):1263-1284.
Frequently Asked Questions About Shape Dynamics.Henrique Gomes & Tim Koslowski - 2013 - Foundations of Physics 43 (12):1428-1458.

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