English

Cosmological constraints on induced gravity dark energy models

Cosmology and Nongalactic Astrophysics 2016-06-08 v1

Abstract

We study induced gravity dark energy models coupled with a simple monomial potential σn\propto \sigma^n and a positive exponent nn. These simple potentials lead to viable dark energy models with a weak dependence on the exponent, which characterizes the accelerated expansion of the cosmological model in the asymptotic attractor, when ordinary matter becomes negligible. We use recent cosmological data to constrain the coupling γ\gamma to the Ricci curvature, under the assumptions that the scalar field starts at rest deep in the radiation era and that the gravitational constant in the Einstein equations is compatible with the one measured in a Cavendish-like experiment. By using PlanckPlanck 2015 data only, we obtain the 95 % CL bound γ<0.0017\gamma < 0.0017 for n=4n=4, which is further tightened to γ<0.00075\gamma < 0.00075 by adding Baryonic Acoustic Oscillations (BAO) data. This latter bound improves by 30\sim 30 % the limit obtained with the PlanckPlanck 2013 data and the same compilation of BAO data. We discuss the dependence of the γ\gamma and G˙N/GN(z=0)\dot G_N/G_N (z=0) on nn.

Keywords

Cite

@article{arxiv.1601.03387,
  title  = {Cosmological constraints on induced gravity dark energy models},
  author = {Mario Ballardini and Fabio Finelli and Caterina Umiltà and Daniela Paoletti},
  journal= {arXiv preprint arXiv:1601.03387},
  year   = {2016}
}

Comments

16 pages, 10 figures

R2 v1 2026-06-22T12:28:59.238Z