Cosmological Constraints on the DGP braneworld model with Gamma-ray bursts
arXiv:1010.2681 · doi:10.1088/1674-4527/11/5/001
Abstract
We investigate observational constraints on the Dvali, Gabadadze and Porrati (DGP) model with Gamma-ray bursts (GRBs) at high redshift obtained directly from the Union2 Type Ia supernovae data (SNe Ia) set. With the cosmology-independent GRBs, the Union2 set, as well as the cosmic microwave background (CMB) observations from the WMAP7 result, the baryon acoustic oscillation, the baryon mass fraction in clusters and the observed data, we obtain that the best-fit values of the DGP model are , which favor a flat universe; and the transition redshift of the DGP model is . These results lead to more stringent constraints than the previous results for the DGP model.
9 pages, 1 figure, 1 table; accepted for publication in Res. Astron. Astrophys
References in corpus (31)
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Cosmological Evolution of a Quintom Model of Dark Energy
- A Dark Energy Model Characterized by the Age of the Universe
- A New Model of Agegraphic Dark Energy
- A Holographic Dark Energy Model from Ricci Scalar Curvature
- The Hubble Diagram to Redshift >6 from 69 Gamma-Ray Bursts
- A Cosmology-Independent Calibration of Gamma-Ray Burst Luminosity Relations and the Hubble Diagram
- Observational constraints on self-accelerating cosmology
- Large-Scale Tests of the DGP Model
- Model-Independent Distance Measurements from Gamma-Ray Bursts and Constraints on Dark Energy
- Gamma-Ray Bursts in Suggest that the Time Variation of the Dark Energy is Small
- Lookback time as a test for brane cosmology
- Cosmological Constraints on the Modified Entropic Force Model
- Reconstructing the Cosmic Expansion History up to Redshift z=6.29 with the Calibrated Gamma-Ray Bursts
- Accelerating cosmologies tested by distance measures
- Measuring Dark Energy with Gamma-Ray Bursts and Other Cosmological Probes
- The Hubble diagram extended to z>>1: the gamma-ray properties of GRBs confirm the Lambda-CDM model
- Constraints on the generalized Chaplygin gas model including gamma-ray bursts via a Markov Chain Monte Carlo approach
- Constraints on a variable dark energy model with recent observations
- Constraining the evolution of dark energy with type Ia supernovae and gamma-ray bursts
- Cosmic Constraint to DGP Brane Model: Geometrical and Dynamical Perspectives
- Constraining DGP Gravity from Observational Data
- Testing the DGP model with gravitational lensing statistics
- Observational Constraints with Recent Data on the DGP Modified Gravity
- Deviation from the Cosmological Constant or Systematic Errors?
- Cosmological Models and Latest Observational Data
- Gamma-ray burst contributions to constraining the evolution of dark energy
- Constraints on the DGP Universe Using Observational Hubble parameter
- Observational constraints on modified gravity models and the Poincaré dodecahedral topology
- Observational constrains on the DGP brane-world model with a Gauss-Bonnet term in the bulk
- Hubble Diagram of Gamma-Rays Bursts calibrated with Gurzadyan-Xue Cosmology
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- Testing the phenomenological interacting dark energy with observational data
- Inflation in a closed universe
- Probing modified gravity theories with multiple measurements of high-redshift quasars
- Testing nonstandard cosmological models with SNLS3 supernova data and other cosmological probes
- Model-Independent Reconstruction of the Expansion History of the Universe from Type Ia Supernovae
- Confronting DGP Braneworld Gravity with Cosmic Observations after Planck Data
- Cosmological aspects of gravity in a simple model with a parametrization of
- Late time accelerated scaling attractors in DGP (Dvali-Gabadadze-Porrati) braneworld
- GRB Hubble diagram and constraints on a Λ(t)CDM model
- Latest Cosmological Constraints on Cardassian expansion models including the updated Gamma-ray bursts
- On the cosmological viability of the Hu-Sawicki type modified induced gravity
- Cosmological Constraints on the DGP Model in light of DESI DR2 2025 Data