English

Realizing Scale-invariant Density Perturbations in Low-energy Effective String Theory

High Energy Physics - Theory 2008-11-26 v2 Astrophysics General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

We discuss the realization of inflation and resulting cosmological perturbations in the low-energy effective string theory. In order to obtain nearly scale-invariant spectra of density perturbations and a suppressed tensor-to-scalar ratio, it is generally necessary that the dilaton field ϕ\phi is effectively decoupled from gravity together with the existence of a slowly varying dilaton potential. We also study the effect of second-order corrections to the tree-level action which are the sum of a Gauss-Bonnet term coupled to ϕ\phi and a kinetic term (ϕ)4(\nabla \phi)^4. We find that it is possible to realize observationally supported spectra of scalar and tensor perturbations provided that the correction is dominated by the (ϕ)4(\nabla \phi)^4 term even in the absence of the dilaton potential. When the Gauss-Bonnet term is dominant, tensor perturbations exhibit violent negative instabilities on small-scales about a de Sitter background in spite of the fact that scale-invariant scalar perturbations can be achieved.

Keywords

Cite

@article{arxiv.hep-th/0610336,
  title  = {Realizing Scale-invariant Density Perturbations in Low-energy Effective String Theory},
  author = {Zong-Kuan Guo and Nobuyoshi Ohta and Shinji Tsujikawa},
  journal= {arXiv preprint arXiv:hep-th/0610336},
  year   = {2008}
}

Comments

13 pages; v2: minor corrections, refs. added, version to appear in PRD

R2 v1 2026-07-22T15:39:02.342Z