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Phys. Rev. D 59, 083513 (1999) [24 pages]

Noise induced transitions in semiclassical cosmology

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Esteban Calzetta
Instituto de Astronomía y Física del Espacio (IAFE) and Departamento de Física, Universidad de Buenos Aires, Ciudad Universitaria, 1428 Buenos Aires, Argentina

Enric Verdaguer
Departament de Física Fonamental and Institut de Física d’Altes Energies (IFAE), Universitat de Barcelona, Av. Diagonal 647, E-08028 Barcelona, Spain

Received 10 July 1998; published 25 March 1999

A semiclassical cosmological model is considered which consists of a closed Friedmann-Robertson-Walker spacetime in the presence of a cosmological constant, which mimics the effect of an inflaton field, and a massless, non-conformally coupled quantum scalar field. We show that the back-reaction of the quantum field, which consists basically of a nonlocal term due to gravitational particle creation and a noise term induced by the quantum fluctuations of the field, are able to drive the cosmological scale factor over the barrier of the classical potential so that if the universe starts near a zero scale factor (initial singularity), it can make the transition to an exponentially expanding de Sitter phase. We compute the probability of this transition and it turns out to be comparable with the probability that the universe tunnels from “nothing” into an inflationary stage in quantum cosmology. This suggests that in the presence of matter fields the back-reaction on the spacetime should not be neglected in quantum cosmology.

© 1999 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevD.59.083513
DOI:
10.1103/PhysRevD.59.083513
PACS:
98.80.Cq, 04.62.+v, 05.40.Ca