gravity theories in the Palatini Formalism constrained from strong lensing
arXiv:0812.0660 · doi:10.1111/j.1365-2966.2008.14318.x
Abstract
gravity, capable of driving the late-time acceleration of the universe, is emerging as a promising alternative to dark energy. Various gravity models have been intensively tested against probes of the expansion history, including type Ia supernovae (SNIa), the cosmic microwave background (CMB) and baryon acoustic oscillations (BAO). In this paper we propose to use the statistical lens sample from Sloan Digital Sky Survey Quasar Lens Search Data Release 3 (SQLS DR3) to constrain gravity models. This sample can probe the expansion history up to , higher than what probed by current SNIa and BAO data. We adopt a typical parameterization of the form with and constants. For (CDM), we obtain the best-fit value of the parameter , for which the 95% confidence interval that is [-4.633, -3.754]. This best-fit value of corresponds to the matter density parameter , consistent with constraints from other probes. Allowing to be free, the best-fit parameters are . Consequently, we give and the deceleration parameter . At the 95% confidence level, and are constrained to [-4.67, -2.89] and [-0.078, 0.202] respectively. Clearly, given the currently limited sample size, we can only constrain within the accuracy of and thus can not distinguish between CDM and gravity with high significance, and actually, the former lies in the 68% confidence contour. We expect that the extension of the SQLS DR3 lens sample to the SDSS DR5 and SDSS-II will make constraints on the model more stringent.
10 pages, 7 figures. Accepted for publication in MNRAS
References in corpus (27)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Dynamics of dark energy
- New Hubble Space Telescope Discoveries of Type Ia Supernovae at z > 1: Narrowing Constraints on the Early Behavior of Dark Energy
- Three Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Polarization Analysis
- An Observational Determination of the Bolometric Quasar Luminosity Function
- Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Temperature Analysis
- The Cosmology of f(R) Gravity in the Metric Variational Approach
- Limit to General Relativity in f(R) theories of gravity
- Solar System tests DO rule out 1/R gravity
- The matter power spectrum in f(R) gravity
- f(R) gravity theories in Palatini formalism: cosmological dynamics and observational constraints
- The Sloan Digital Sky Survey Quasar Lens Search. I. Candidate Selection Algorithm
- Generalized Chaplygin gas model: constraints from Hubble parameter versus Redshift Data
- Power-laws f(R) theories are cosmologically unacceptable
- The behavior of gravity in the solar system, galaxies and clusters
- The Sloan Digital Sky Survey Quasar Lens Search. II. Statistical Lens Sample from the Third Data Release
- The Sloan Digital Sky Survey Quasar Lens Search. III. Constraints on Dark Energy from the Third Data Release Quasar Lens Catalog
- Constraints on f(R) Cosmology in the Palatini Formalism
- CMB and Matter Power Spectra of Early f(R) Cosmology in Palatini Formalism
- Gravitational lensing in fourth order gravity
- Accelerated Cosmological Models in Modified Gravity tested by distant Supernovae SNIa data
- Strong lensing probability for testing TeVeS theory
- Cosmological Constraints from Hubble Parameter on f(R) Cosmologies
- Cosmological Parameters from the SDSS DR5 Velocity Dispersion Function of Early-Type Galaxies through Radio-Selected Lens Statistics
- Strong lensing statistics in large, z~<0.2 surveys: bias in the lens galaxy population
- Testing the DGP model with gravitational lensing statistics
- Properties of Wide-separation Lensed Quasars by Clusters of Galaxies in the SDSS
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- Palatini Approach to Modified Gravity: f(R) Theories and Beyond
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- Wormhole solutions in Gravity
- Gödel-type universes in Palatini f(R) gravity
- Constraints on f(R) cosmologies from strong gravitational lensing systems
- General slow-roll inflation in gravity under the Palatini approach
- Gravitational baryogenesis models comparison in f(R) Gravity
- Cosmology with Hu-Sawicki gravity in Palatini Formalism
- Testing f(R) gravity with the simulated data of gravitational waves from the Einstein Telescope
- Future dynamics in f(R) theories
- Black holes and regular black holes in coincident gravity coupled to nonlinear electrodynamics
- Cusp-core problem and strong gravitational lensing
- Baryon effects on the dark matter halos constrained from strong gravitational lensing
- gravity with broken Weyl gauge symmetry, cosmological backreaction, and its effects on CMB anisotropy
- Fluctuation of the Hubble parameter