• 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