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Phys. Rev. D 59, 083512 (1999) [12 pages]

Singularity-free cosmological solutions in quadratic gravity

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P. Kanti*, J. Rizos, and K. Tamvakis
Division of Theoretical Physics, Physics Department, University of Ioannina, Ioannina GR 451 10, Greece

Received 23 June 1998; published 25 March 1999

We study a general field theory of a scalar field coupled to gravity through a quadratic Gauss-Bonnet term ξ(φ)RGB2. The coupling function has the form ξ(φ)=φn, where n is a positive integer. In the absence of the Gauss-Bonnet term, the cosmological solutions for an empty universe and a universe dominated by the energy-momentum tensor of a scalar field are always characterized by the occurrence of a true cosmological singularity. By employing analytical and numerical methods, we show that, in the presence of the quadratic Gauss-Bonnet term, for the dual case of even n, the set of solutions of the classical equations of motion in a curved FRW background includes singularity-free cosmological solutions. The singular solutions are shown to be confined in a part of the phase space of the theory allowing the non-singular solutions to fill the rest of the space. We conjecture that the same theory with a general coupling function that satisfies certain criteria may lead to non-singular cosmological solutions.

© 1999 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevD.59.083512
DOI:
10.1103/PhysRevD.59.083512
PACS:
98.80.Hw, 04.20.Jb, 04.50.+h, 11.25.Mj

*Email address: pkanti@cc.uoi.gr

Email address: irizos@cc.uoi.gr

Email address: tamvakis@cc.uoi.gr