A cosmological exclusion plot: Towards model-independent constraints on modified gravity from current and future growth rate data
arXiv:1408.3520 · doi:10.1088/1475-7516/2015/02/001
Abstract
Most cosmological constraints on modified gravity are obtained assuming that the cosmic evolution was standard CDM in the past and that the present matter density and power spectrum normalization are the same as in a CDM model. Here we examine how the constraints change when these assumptions are lifted. We focus in particular on the parameter (also called ) that quantifies the deviation from the Poisson equation. This parameter can be estimated by comparing with the model-independent growth rate quantity obtained through redshift distortions. We reduce the model dependency in evaluating by marginalizing over and over the initial conditions, and by absorbing the degenerate parameter into . We use all currently available values of . We find that the combination , assumed constant in the observed redshift range, can be constrained only very weakly by current data, at 68\% c.l. We also forecast the precision of a future estimation of in a Euclid-like redshift survey. We find that the future constraints will reduce substantially the uncertainty, , at 68\% c.l., but the relative error on around the fiducial remains quite high, of the order of 30\%. The main reason for these weak constraints is that is strongly degenerate with the initial conditions, so that large or small values of are compensated by choosing non-standard initial values of the derivative of the matter density contrast. Finally, we produce a forecast of a cosmological exclusion plot on the Yukawa strength and range parameters, which complements similar plots on laboratory scales but explores scales and epochs reachable only with large-scale galaxy surveys. (abridged)
15 pages, 8 figures
References in corpus (16)
- Tests of the Gravitational Inverse-Square Law below the Dark-Energy Length Scale
- Measuring the dark side (with weak lensing)
- Testing cosmological structure formation using redshift-space distortions
- Anisotropic stress as signature of non-standard propagation of gravitational waves
- Dark Energy versus Modified Gravity
- A 2.5% measurement of the growth rate from small-scale redshift space clustering of SDSS-III CMASS galaxies
- Observables and unobservables in dark energy cosmologies
- The Weak Lensing Signal and the Clustering of BOSS Galaxies II: Astrophysical and Cosmological Constraints
- Stable and unstable cosmological models in bimetric massive gravity
- Observational constraints on the linear fluctuation growth rate
- Growth factor parametrization and modified gravity
- Measuring the speed of cosmological gravitational waves
- Effects of modified gravity on B-mode polarization
- Probing non-standard gravity with the growth index: a background independent analysis
- Growth Rate in the Dynamical Dark Energy Models
- f(R) Cosmology revisited