English

Observational constraints on G-corrected holographic dark energy using a Markov chain Monte Carlo method

Cosmology and Nongalactic Astrophysics 2014-03-05 v1

Abstract

We constrain holographic dark energy (HDE) with time varying gravitational coupling constant in the framework of the modified Friedmann equations using cosmological data from type Ia supernovae, baryon acoustic oscillations, cosmic microwave background radiation and X-ray gas mass fraction. Applying a Markov Chain Monte Carlo (MCMC) simulation, we obtain the best fit values of the model and cosmological parameters within 1σ1\sigma confidence level (CL) in a flat universe as: Ωbh2=0.02220.0013+0.0018\Omega_{\rm b}h^2=0.0222^{+0.0018}_{-0.0013}, Ωch2=0.11210.0079+0.0110\Omega_{\rm c}h^2 =0.1121^{+0.0110}_{-0.0079}, αGG˙/(HG)=0.16470.2971+0.3547\alpha_{\rm G}\equiv \dot{G}/(HG) =0.1647^{+0.3547}_{-0.2971} and the HDE constant c=0.93220.5447+0.4569c=0.9322^{+0.4569}_{-0.5447}. Using the best fit values, the equation of state of the dark component at the present time wd0w_{\rm d0} at 1σ1\sigma CL can cross the phantom boundary w=1w=-1.

Keywords

Cite

@article{arxiv.1309.4566,
  title  = {Observational constraints on G-corrected holographic dark energy using a Markov chain Monte Carlo method},
  author = {Hamzeh Alavirad and Mohammad Malekjani},
  journal= {arXiv preprint arXiv:1309.4566},
  year   = {2014}
}

Comments

11 pages, two figures, one table