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Dynamics of Pure Shape, Relativity, and the Problem of Time

  • Part II Gravity and Cosmology - Classical and Quantum Aspects
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Book cover Decoherence and Entropy in Complex Systems

Part of the book series: Lecture Notes in Physics ((LNP,volume 633))

Abstract

A new approach to the dynamics of the universe based on work by Ó Murchadha, Foster, Anderson and the author is presented. The only kinematics presupposed is the spatial geometry needed to define configuration spaces in purely relational terms. A new formulation of the relativity principle based on Poincaré’s analysis of the problem of absolute and relative motion (Mach’s principle) is given. The entire dynamics is based on shape and nothing else. It leads to much stronger predictions than standard Newtonian theory. For the dynamics of Riemannian 3-geometries on which matter fields also evolve, implementation of the new relativity principle establishes unexpected links between special relativity, general relativity and the gauge principle. They all emerge together as a self-consistent complex from a unified and completely relational approach to dynamics. A connection between time and scale invariance is established. In particular, the representation of general relativity as evolution of the shape of space leads to a unique dynamical definition of simultaneity. This opens up the prospect of a solution of the problem of time in quantum gravity on the basis of a fundamental dynamical principle.

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Hans-Thomas Elze

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© 2004 Springer-Verlag Berlin/Heidelberg

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Barbour, J. (2004). Dynamics of Pure Shape, Relativity, and the Problem of Time. In: Elze, HT. (eds) Decoherence and Entropy in Complex Systems. Lecture Notes in Physics, vol 633. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-540-40968-7_3

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  • DOI: https://doi.org/10.1007/978-3-540-40968-7_3

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  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-540-20639-2

  • Online ISBN: 978-3-540-40968-7

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