corner
corner

Phys. Rev. D 52, 1988–2000 (1995)

Self-adjoint Wheeler-DeWitt operators, the problem of time, and the wave function of the Universe

Download: PDF (580 kB) Buy this article Export: BibTeX or EndNote (RIS)

Joshua Feinberg
Theory Group, Department of Physics, The University of Texas at Austin, RLM5.208, Austin, Texas 78712

Yoav Peleg
Department of Physics, University of Wisconsin at Milwaukee, Milwaukee, Wisconsin 53201

Received 10 April 1995; published in the issue dated 15 August 1995

We discuss minisuperspace aspects of a nonempty Robertson-Walker universe containing a scalar matter field. The requirement that the Wheeler-DeWitt (WDW) operator be self-adjoint is a key ingredient in constructing the physical Hilbert space and has nontrivial cosmological implications since it is related to the problem of time in quantum cosmology. Namely, if time is parametrized by matter fields we find two types of domains for the self-adjoint WDW operator: a nontrivial domain is comprised of zero current (Hartle-Hawking-type) wave functions and is parametrized by two new parameters, whereas the domain of a self-adjoint WDW operator acting on tunneling (Vilenkin-type) wave functions is a single ray. On the other hand, if time is parametrized by the scale factor both wave function types give rise to nontrivial domains for the self-adjoint WDW operators, and no new parameters appear in them.

© 1995 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevD.52.1988
DOI:
10.1103/PhysRevD.52.1988
PACS:
98.80.Hw, 02.30.Tb, 04.60.Kz, 98.80.Bp