MINISUPERSPACES: OBSERVABLES AND QUANTIZATION

Author:

ASHTEKAR ABHAY1,TATE RANJEET12,UGGLA CLAES13

Affiliation:

1. Physics Department, Syracuse University, Syracuse, NY 13244–1130, USA

2. Physics Department, University of California, Santa Barbara, CA 93106, USA

3. Department of Physics, Luleå University of Technology, S-951 87 Luleå, Sweden

Abstract

A canonical transformation is performed on the phase space of a number of homogeneous cosmologies to simplify the form of the scalar (or Hamiltonian) constraint. Using the new canonical coordinates, it is then easy to obtain explicit expressions of Dirac observables, i.e. phase-space functions which commute weakly with the constraint. This, in turn, enables us to carry out a general quantization program to completion. We are also able to address the issue of time through “deparametrization” and discuss physical questions such as the fate of initial singularities in the quantum theory. We find that they persist in the quantum theory in spite of the fact that the evolution is implemented by a one-parameter family of unitary transformations. Finally, certain of these models admit conditional symmetries which are explicit already prior to the canonical transformation. These can be used to pass to the quantum theory following an independent avenue. The two quantum theories — based, respectively, on Dirac observables in the new canonical variables and conditional symmetries in the original ADM variables — are compared and shown to be equivalent.

Publisher

World Scientific Pub Co Pte Lt

Subject

Space and Planetary Science,Astronomy and Astrophysics,Mathematical Physics

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