Observational constraints on Gauss-Bonnet cosmology
Abstract
We analyze a fully geometric approach to dark energy in the framework of theories of gravity, where is the Ricci curvature scalar and is the Gauss-Bonnet topological invariant. The latter invariant naturally exhausts, together with , the whole curvature content related to curvature invariants coming from the Riemann tensor. In particular, we study a class of models with power law solutions and find that, depending on the value of the geometrical parameter, a shift in the anisotropy peaks position of the temperature power spectrum is produced, as well as an increasing in the matter power spectrum amplitude. This fact could be extremely relevant to fix the form of the model. We also perform a MCMC analysis using both Cosmic Microwave Background data by the Planck (2015) release and the Joint Light-Curve Analysis of the SNLS-SDSS collaborative effort, combined with the current local measurements of the Hubble value, , and galaxy data from the Sloan Digital Sky Survey (BOSS CMASS DR11). We show that such a model can describe the CMB data with slightly high values, and the prediction on the amplitude matter spectrum value is proved to be in accordance with the observed matter distribution of the universe. At the same time, the value constrained for the geometric parameter implies a density evolution of such a components that is growing with time.
Keywords
Cite
@article{arxiv.1803.00895,
title = {Observational constraints on Gauss-Bonnet cosmology},
author = {Micol Benetti and Simony Santos da Costa and Salvatore Capozziello and Jailson S. Alcaniz and Mariafelicia De Laurentis},
journal= {arXiv preprint arXiv:1803.00895},
year = {2020}
}
Comments
14 pages, 5 figures, to be published in International Journal of Modern Physics D