Cosmological Constraints from Hubble Parameter on f(R) Cosmologies
Abstract
Modified gravity in the Palatini approach has been presently applied to Cosmology as a realistic alternative to dark energy. In this concern, a number of authors have searched for observational constraints on several gravity functional forms using mainly data of type Ia supenovae (SNe Ia), Cosmic Microwave Background ({\rm CMB}) radiation and Large Scale Structure ({\rm LSS}). In this paper, by considering a homogeneous and isotropic flat universe, we use determinations of the Hubble function , which are based on differential age method, to place bounds on the free parameters of the functional form. We also combine the data with constraints from Baryon Acoustic Oscillations ({\rm BAO}) and {\rm CMB} measurements, obtaining ranges of values for and in agreement with other independent analyses. We find that, for some intervals of and , models based on gravity in the Palatini approach, unlike the metric formalism, can produce the sequence of radiation-dominated, matter-dominated, and accelerating periods without need of dark energy.
Cite
@article{arxiv.0804.2878,
title = {Cosmological Constraints from Hubble Parameter on f(R) Cosmologies},
author = {F. C. Carvalho and E. M. Santos and J. S. Alcaniz and J. Santos},
journal= {arXiv preprint arXiv:0804.2878},
year = {2009}
}
Comments
11 pages, 7 figures, 1 Table, LaTeX