Title of article
Ghost conditions for Gauss–Bonnet cosmologies Original Research Article
Author/Authors
Gianluca Calcagni، نويسنده , , Beatriz de Carlos، نويسنده , , Antonio De Felice، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
35
From page
404
To page
438
Abstract
We investigate the stability against inhomogeneous perturbations and the appearance of ghost modes in Gauss–Bonnet gravitational theories with a non-minimally coupled scalar field, which can be regarded as either the dilaton or a compactification modulus in the context of string theory. Through cosmological linear perturbations we extract four no-ghost and two sub-luminal constraint equations, written in terms of background quantities, which must be satisfied for consistency. We also argue that, for a general action with quadratic Riemann invariants, homogeneous and inhomogeneous perturbations are, in general, inequivalent, and that attractors in the phase space can have ghosts. These results are then generalized to a two-field configuration. Single-field models as candidates for dark energy are explored numerically and severe bounds on the parameter space of initial conditions are placed. A number of cases proposed in the literature are tested and most of them are found to be unstable or observationally unviable.
Keywords
Dark energy , Ghost instabilities , Scalar–tensor gravity , Gauss–Bonnet cosmology
Journal title
Nuclear Physics B
Serial Year
2006
Journal title
Nuclear Physics B
Record number
875131
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