Probing non-standard gravity with the growth index: a background independent analysis
arXiv:1403.0898 · doi:10.1088/1475-7516/2014/05/042
Abstract
Measurements of the growth index provide a clue as to whether Einstein's field equations encompass gravity also on large cosmic scales, those where the expansion of the universe accelerates. We show that the information encoded in this function can be satisfactorily parameterized using a small set of coefficients in such a way that the true scaling of the growth index is recovered to better than in most dark energy and dark gravity models. We find that the likelihood of current data is maximal for and , a measurement compatible with the CDM predictions. Moreover data favor models predicting slightly less growth of structures than the Planck LambdaCDM scenario. The main aim of the paper is to provide a prescription for routinely calculating, in an analytic way, the amplitude of the growth indices in relevant cosmological scenarios, and to show that these parameters naturally define a space where predictions of alternative theories of gravity can be compared against growth data in a manner which is independent from the expansion history of the cosmological background. As the standard -plane provides a tool to identify different expansion histories and their relation to various cosmological models, the -plane can thus be used to locate different growth rate histories and their relation to alternatives model of gravity. As a result, we find that the Dvali-Gabadadze-Porrati gravity model is rejected with a confidence level. By simulating future data sets, such as those that a Euclid-like mission will provide, we also show how to tell apart LambdaCDM predictions from those of more extreme possibilities, such as smooth dark energy models, clustering quintessence or parameterized post-Friedmann cosmological models.
29 pages, 21 figures
References in corpus (25)
- Dynamics of dark energy
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Cosmology and the Fate of Dilatation Symmetry
- Resummation of Massive Gravity
- Covariant Galileon
- A test of the nature of cosmic acceleration using galaxy redshift distortions
- Imperfect Dark Energy from Kinetic Gravity Braiding
- The Effective Theory of Quintessence: the w<-1 Side Unveiled
- Dark Energy versus Modified Gravity
- Testing LCDM with the Growth Function δ(a): Current Constraints
- The 2dF-SDSS LRG and QSO Survey: The LRG 2-Point Correlation Function and Redshift-Space Distortions
- The Parameterized Post-Friedmann Framework for Theories of Modified Gravity: Concepts, Formalism and Examples
- Non-Local Modification of Gravity and the Cosmological Constant Problem
- On the growth of linear perturbations
- Clustering of luminous red galaxies I: large scale redshift space distortions
- Observational constraints on the linear fluctuation growth rate
- Growth factor parametrization and modified gravity
- The growth of matter perturbations in some scalar-tensor DE models
- Growth Index of DGP Model and Current Growth Rate Data
- Parameterizing the Effect of Dark Energy Perturbations on the Growth of Structures
- The WiggleZ Dark Energy Survey: measuring the cosmic growth rate with the two-point galaxy correlation function
- The linear growth rate of structure in Parametrized Post Friedmannian Universes
- Cosmological tests of modified gravity: constraints on theories from the galaxy clustering ratio
- Imprints of deviations from the gravitational inverse-square law on the power spectrum of mass fluctuations
- Constraining the growth factor with baryon oscillations
Cited by in corpus (10)
- Effective Field Theory of Cosmic Acceleration: constraining dark energy with CMB data
- Measuring the growth of matter fluctuations with third-order galaxy correlations
- Finsler-Randers Cosmology: dynamical analysis and growth of matter perturbations
- Testing Einstein's gravity and dark energy with growth of matter perturbations: Indications for new Physics?
- Agegraphic dark energy: growth index and cosmological implications
- Cosmological tests of modified gravity: constraints on theories from the galaxy clustering ratio
- The growth index of matter perturbations using the clustering of dark energy
- Imprints of interacting dark energy on cosmological perturbations
- A cosmological exclusion plot: Towards model-independent constraints on modified gravity from current and future growth rate data
- On the dynamical emergence of de Sitter spacetime