English

Cosmological parameters from CMB measurements and the final 2dFGRS power spectrum

Astrophysics 2009-06-12 v3 High Energy Physics - Phenomenology

Abstract

We derive constraints on cosmological parameters using the power spectrum of galaxy clustering measured from the final two-degree field galaxy redshift survey (2dFGRS) and a compilation of measurements of the temperature power spectrum and temperature-polarization cross-correlation of the cosmic microwave background radiation. We analyse a range of parameter sets and priors, allowing for massive neutrinos, curvature, tensors and general dark energy models. In all cases, the combination of datasets tightens the constraints, with the most dramatic improvements found for the density of dark matter and the energy-density of dark energy. If we assume a flat universe, we find a matter density parameter of Ωm=0.237±0.020\Omega_{\rm m}=0.237 \pm 0.020, a baryon density parameter of Ωb=0.041±0.002\Omega_{\rm b} = 0.041 \pm 0.002, a Hubble constant of H0=74±2kms1Mpc1H_{0}=74\pm2 {\rm kms}^{-1}{\rm Mpc}^{-1}, a linear theory matter fluctuation amplitude of σ8=0.77±0.05\sigma_{8}=0.77\pm0.05 and a scalar spectral index of ns=0.954±0.023n_{\rm s}=0.954 \pm 0.023 (all errors show the 68% interval). Our estimate of nsn_{\rm s} is only marginally consistent with the scale invariant value ns=1n_{\rm s}=1; this spectrum is formally excluded at the 95% confidence level. However, the detection of a tilt in the spectrum is sensitive to the choice of parameter space. If we allow the equation of state of the dark energy to float, we find wDE=0.850.17+0.18w_{\rm DE}= -0.85_{-0.17}^{+0.18}, consistent with a cosmological constant. We also place new limits on the mass fraction of massive neutrinos: fν<0.105f_{\nu} < 0.105 at the 95% level, corresponding to mν<1.2\sum m_{\nu} < 1.2 eV.

Keywords

Cite

@article{arxiv.astro-ph/0507583,
  title  = {Cosmological parameters from CMB measurements and the final 2dFGRS power spectrum},
  author = {Ariel G. Sanchez and C. M. Baugh and W. J. Percival and J. A. Peacock and N. D. Padilla and S. Cole and C. S. Frenk and P. Norberg},
  journal= {arXiv preprint arXiv:astro-ph/0507583},
  year   = {2009}
}

Comments

MNRAS, in press. Minor revision after referee's report. 22 pages, 18 plots. Colour figures for talks (including additional plots which do not appear in the paper) can be downloaded from http://star-www.dur.ac.uk/~cmb/Params/