Semiclassical approximation to supersymmetric quantum gravity

Claus Kiefer, Tobias Lück, and Paulo Moniz
Phys. Rev. D 72, 045006 – Published 8 August 2005

Abstract

We develop a semiclassical approximation scheme for the constraint equations of supersymmetric canonical quantum gravity. This is achieved by a Born-Oppenheimer type of expansion, in analogy to the case of the usual Wheeler-DeWitt equation. The formalism is only consistent if the states at each order depend on the gravitino field. We recover at consecutive orders the Hamilton-Jacobi equation, the functional Schrödinger equation, and quantum gravitational correction terms to this Schrödinger equation. In particular, the following consequences are found: (i) the Hamilton-Jacobi equation and therefore the background spacetime must involve the gravitino, (ii) a (many-fingered) local time parameter has to be present on super Riem Σ (the space of all possible tetrad and gravitino fields), (iii) quantum supersymmetric gravitational corrections affect the evolution of the very early Universe. The physical meaning of these equations and results, in particular, the similarities to and differences from the pure bosonic case, are discussed.

  • Received 1 June 2005

DOI:https://doi.org/10.1103/PhysRevD.72.045006

©2005 American Physical Society

Authors & Affiliations

Claus Kiefer* and Tobias Lück

  • Institut für Theoretische Physik, Universität zu Köln, Zülpicher Strasse 77, 50937 Köln, Germany

Paulo Moniz

  • Astronomy Unit, School of Mathematical Sciences, Queen Mary College, University of London, Mile End Road, London E1 4NS, United Kingdom

  • *Electronic address: kiefer@thp.uni-koeln.de
  • Electronic address: lueck@thp.uni-koeln.de
  • On leave of absence from Departmento de Fisica, UBI, Covilha, Portugal; Also at Centra-IST, Lisboa, Portugal; Electronic addresses: p.moniz@qmul.ac.uk http://webx.ubi.pt/~pmoniz

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Issue

Vol. 72, Iss. 4 — 15 August 2005

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