Cosmological constraints and comparison of viable f(R)f(R) models

Oct 16, 2017
12 pages
Published in:
  • Phys.Rev.D 97 (2018) 2, 023525
  • Published: Jan 26, 2018
e-Print:
Report number:
  • IFT-UAM-CSIC-17-095

Citations per year

2016201820202022202402468
Abstract: (APS)
In this paper we present cosmological constraints on several well-known f(R) models, but also on a new class of models that are variants of the Hu-Sawicki one of the form f(R)=R-2Λ1+by(R,Λ), that interpolate between the cosmological constant model and a matter dominated universe for different values of the parameter b, which is usually expected to be small for viable models and which in practice measures the deviation from general relativity. We use the latest growth rate, cosmic microwave background, baryon acoustic oscillations, supernovae type Ia and Hubble parameter data to place stringent constraints on the models and to compare them to the cosmological constant model but also other viable f(R) models such as the Starobinsky or the degenerate hypergeometric models. We find that these kinds of Hu-Sawicki variant parametrizations are in general compatible with the currently available data and can provide useful toy models to explore the available functional space of f(R) models, something very useful with the current and upcoming surveys that will test deviations from general relativity.
Note:
  • 12 pages, 5 figures, 6 tables. Comments welcome. Changes match published version
  • gravitation: f(R)
  • baryon: oscillation: acoustic
  • cosmological constant
  • general relativity
  • cosmic background radiation
  • Hubble constant
  • supernova
  • toy model
  • baryon
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