Spatial curvature and cosmological tests of general relativity
arXiv:1205.2422 · doi:10.1103/PhysRevD.86.103008
Abstract
It is well-known that allowing for spatial curvature affects constraints on cosmological parameters such as the dark energy equation of state parameters. Here we study the effect of curvature on constraints on parameters used to test general relativity (GR) at cosmological scales, commonly known as modified growth (MG) parameters, as while current data taken in the context of the CDM model points to a universe that is flat or very close to it, this constraint may not hold in modified theories of gravity. Using the latest cosmological data sets we find that MG parameters are correlated with the curvature parameter and the constraints on the MG parameters are weakened compared to when is not included in the parameter analysis. We next use various future simulated data sets, including cosmic microwave background, weak lensing, and Integrated Sachs-Wolfe-galaxy cross-correlations, where the fiducial model is spatially curved but we assume a flat model when fitting the MG parameters. We find the assumption of a spatially flat model on a spatially curved universe does indeed cause an artificial shift in the constraints on the MG parameters, in some cases even producing an apparent deviation from GR in the MG parameter space. For our simulated data, tension with GR begins to manifest itself for fiducial models with $\abs{Ω_k} \geq 0.02$ and apparent deviations appear for $\abs{Ω_k} \geq 0.05$. We find that for negatively curved models the apparent deviation is more significant. The manifestation of this apparent deviation from GR due to the assumption of spatial flatness above leads one to conclude that, when using future high-precision data to perform these tests, spatial curvature must be included in the parameter analysis along with the other core cosmological parameters and the MG parameters.
14 pages, 8 figures, matches version published in PRD
References in corpus (29)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- The WiggleZ Dark Energy Survey: mapping the distance-redshift relation with baryon acoustic oscillations
- A Parameterized Post-Friedmann Framework for Modified Gravity
- A discriminating probe of gravity at cosmological scales
- Large Scale Structure as a Probe of Gravitational Slip
- Correlation of CMB with large-scale structure: I. ISW Tomography and Cosmological Implications
- Distinguishing Modified Gravity from Dark Energy
- Observational Tests of Modified Gravity
- Testing gravity with CAMB and CosmoMC
- Dark Energy versus Modified Gravity
- Correlation of CMB with large-scale structure: II. Weak lensing
- 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
- Next Generation Redshift Surveys and the Origin of Cosmic Acceleration
- Testing General Relativity at Cosmological Scales: Implementation and Parameter Correlations
- Cosmological tests of General Relativity: a principal component analysis
- On the curvature of the present-day Universe
- Confronting General Relativity with Further Cosmological Data
- How to Distinguish Dark Energy and Modified Gravity?
- Growth factor parametrization in curved space
- On the determination of curvature and dynamical Dark Energy
- 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
- Phi Zeta Delta: Growth of Perturbations in Parameterized Gravity for an Einstein-de Sitter Universe
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- The Hidden Flat Like Universe: Starobinsky-like inflation induced by f(T) gravity
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- Effects of Self-Calibration of Intrinsic Alignment on Cosmological Parameter Constraints from Future Cosmic Shear Surveys
- Cosmological discordances III: more on measure properties, Large-Scale-Structure constraints, the Hubble constant and Planck
- Separating the Intrinsic Alignment Signal and the Lensing Signal using Self-Calibration in Photo-z Surveys with KiDS450 and KV450 Data
- ISiTGR: Testing deviations from GR at cosmological scales including dynamical dark energy, massive neutrinos, functional or binned parametrizations, and spatial curvature
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- Joint Constraints on the Hubble Constant, Spatial Curvature, and Sound Horizon from the Late-time Universe with Cosmography
- On the question of measuring spatial curvature in an inhomogeneous universe
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- Singling out modified gravity parameters and datasets reveals a dichotomy between Planck and lensing
- Constraints on Spatial Curvature and Dark Energy Dynamics in the CDM Model from DESI DR1 and DR2
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- Cosmological gravity on all scales IV: 3x2pt Fisher forecasts for pixelised phenomenological modified gravity
- Role of Spatial Curvature in a Dark Energy Interacting Model
- Testing a Sign-Switch Cosmological Model with Curvature through Latest Planck 2018, DESI DR2 and PantheonPlus\&SH0ES Observational Data