Effects of Dark Energy Perturbations on Cosmological Tests of General Relativity
arXiv:1311.0726 · doi:10.1103/PhysRevD.88.103008
Abstract
Cosmological tests to distinguish between dark energy (DE) and modifications to gravity are a promising route to obtain clues on the origin of cosmic acceleration. We study here the robustness of these tests to the presence of DE density, velocity, and anisotropic stress perturbations. We find that the dispersion in the growth index parameter remains small enough to distinguish between extreme cases of DE models and some commonly used modified gravity models. The sign of the slope parameter for a redshift dependent growth index was found to be inconsistent as an additional test in extreme cases of DE models with perturbations. Next, we studied the effect of DE perturbations on the modified growth (MG) parameters that enter the perturbed Einstein equations. We find that while the dark energy perturbations affect the MG parameters, the deviations remain smaller than those due to modified gravity models. Additionally, the deviations due to DE perturbations with a non-zero effective sound speed occur at scale ranges that are completely different than those due to some modified gravity models such as the models. In the case of modified gravity models with zero anisotropic stress at late times, the simultaneous determination of the effective dark energy equation of state and the MG parameters can provide the distinction between these models and DE. The growth index test was found to be the most robust to these perturbations. The scale dependence of the MG parameters in some cases of modified gravity constitute a clear-cut discriminant regardless of any DE perturbations. In summary, we find that the currently proposed cosmological tests to distinguish between DE and modified gravity are robust to DE perturbations even for extreme cases. This is certainly the case even for DE models with equations of state of DE that fall well outside of current cosmological constraints.
18 pages, 15 figures. To appear in Phys.Rev.D
References in corpus (25)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- A Parameterized Post-Friedmann Framework for Modified Gravity
- Measuring the dark side (with weak lensing)
- A discriminating probe of gravity at cosmological scales
- Large Scale Structure as a Probe of Gravitational Slip
- Distinguishing Modified Gravity from Dark Energy
- Observational Tests of Modified Gravity
- Testing gravity with CAMB and CosmoMC
- Dark Energy versus Modified Gravity
- Current constraints on the cosmic growth history
- On the growth of linear perturbations
- Probing modifications of General Relativity using current cosmological observations
- Constraints on a New Post-General Relativity Cosmological Parameter
- Cuscuton Cosmology: Dark Energy meets Modified Gravity
- Constraining Dark Energy Anisotropic Stress
- Measuring the Speed of Dark: Detecting Dark Energy Perturbations
- Next Generation Redshift Surveys and the Origin of Cosmic Acceleration
- Growth factor parametrization and modified gravity
- Confronting General Relativity with Further Cosmological Data
- How to Distinguish Dark Energy and Modified Gravity?
- Growth factor parametrization in curved space
- A Multi-Parameter Investigation of Gravitational Slip
- New Parametrization for the Scale Dependent Growth Function in General Relativity
- Lensed Cosmic Microwave Background Constraints on Post-General Relativity Parameters
- Mass Screening in Modified Gravity
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- Constraints and tensions in testing general relativity from Planck and CFHTLenS including intrinsic alignment systematics
- Unveiling the Intrinsic Alignment of Galaxies with Self-Calibration and DECaLS DR3 data
- Growth of matter perturbations in clustered holographic dark energy cosmologies
- Model selection and constraints from Holographic dark energy scenarios
- The impact of dark energy perturbations on the growth index
- Accuracy of the growth index in the presence of dark energy perturbations
- Agegraphic dark energy: growth index and cosmological implications
- On the current status of Modified Gravity
- Testing gravity theories using tensor perturbations
- Current constraints on deviations from General Relativity using binning in redshift and scale
- The growth index of matter perturbations using the clustering of dark energy
- Effects of Self-Calibration of Intrinsic Alignment on Cosmological Parameter Constraints from Future Cosmic Shear Surveys
- Clustering dark energy imprints on cosmological observables of the gravitational field
- Cosmological discordances III: more on measure properties, Large-Scale-Structure constraints, the Hubble constant and Planck
- Observable physical modes of modified gravity
- Combined constraints on deviations of dark energy from an ideal fluid from Euclid and Planck
- Growth of perturbations in dark energy parametrization scenarios
- Self-calibration method for II and GI types of intrinsic alignments of galaxies
- ISiTGR: Testing deviations from GR at cosmological scales including dynamical dark energy, massive neutrinos, functional or binned parametrizations, and spatial curvature
- Separating the Intrinsic Alignment Signal and the Lensing Signal using Self-Calibration in Photo-z Surveys with KiDS450 and KV450 Data
- Constraining dark sector perturbations II: ISW and CMB lensing tomography
- Confronting Dark Energy Anisotropic Stress
- Sub-horizon evolution of cold dark matter perturbations through dark matter-dark energy equivalence epoch
- Matter growth in extended CDM cosmology