Generalized quantum theory of recollapsing homogeneous cosmologies

David Craig and James B. Hartle
Phys. Rev. D 69, 123525 – Published 30 June 2004
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Abstract

A sum-over-histories generalized quantum theory is developed for homogeneous minisuperspace type A Bianchi cosmological models, focusing on the particular example of the classically recollapsing Bianchi type-IX universe. The decoherence functional for such universes is exhibited. We show how the probabilities of decoherent sets of alternative, coarse-grained histories of these model universes can be calculated. We consider in particular the probabilities for classical evolution defined by a suitable coarse graining. For a restricted class of initial conditions and coarse grainings we exhibit the approximate decoherence of alternative histories in which the universe behaves classically and those in which it does not. For these situations we show that the probability is near unity for the universe to recontract classically if it expands classically. We also determine the relative probabilities of quasiclassical trajectories for initial states of WKB form, recovering for such states a precise form of the familiar heuristic JdΣ rule of quantum cosmology, as well as a generalization of this rule to generic initial states.

  • Received 30 November 2003

DOI:https://doi.org/10.1103/PhysRevD.69.123525

©2004 American Physical Society

Authors & Affiliations

David Craig*

  • Department of Physics, Hamilton College, Clinton, New York 13323, USA

James B. Hartle

  • Department of Physics, University of California, Santa Barbara, California 93106-9530, USA

  • *Email address: dcraig@hamilton.edu
  • Email address: hartle@physics.ucsb.edu

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Vol. 69, Iss. 12 — 15 June 2004

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