English

An alternative to the cosmological 'concordance model'

Astrophysics 2011-02-16 v2 High Energy Physics - Phenomenology

Abstract

Precision measurements of the cosmic microwave background by WMAP are believed to have established a flat Λ\Lambda-dominated universe, seeded by nearly scale-invariant adiabatic primordial fluctuations. However by relaxing the hypothesis that the fluctuation spectrum can be described by a single power law, we demonstrate that an Einstein-de Sitter universe with {\em zero} cosmological constant can fit the data as well as the best concordance model. Moreover unlike a Λ\Lambda-dominated universe, such an universe has no strong integrated Sachs-Wolfe effect, so is in better agreement with the low quadrupole seen by WMAP. The main problem is that the Hubble constant is required to be rather low: H046H_0 \simeq 46 km/s/Mpc; we discuss whether this can be consistent with observations. Furthermore for universes consisting only of baryons and cold dark matter, the amplitude of matter fluctuations on cluster scales is too high, a problem which seems generic. However, an additional small contribution (ΩX0.1\Omega_X \sim 0.1) of matter which does not cluster on small scales, e.g. relic neutrinos with mass of order eV or a `quintessence' with w0w \sim 0, can alleviate this problem. Such models provide a satisfying description of the power spectrum derived from the 2dF galaxy redshift survey and from observations of the Ly-α\alpha forest. We conclude that Einstein-de Sitter models can indeed accommodate all data on the large scale structure of the Universe, hence the Hubble diagram of distant Type Ia supernovae remains the only {\em direct} evidence for a non-zero cosmological constant.

Keywords

Cite

@article{arxiv.astro-ph/0304237,
  title  = {An alternative to the cosmological 'concordance model'},
  author = {Alain Blanchard and Marian Douspis and Michael Rowan-Robinson and Subir Sarkar},
  journal= {arXiv preprint arXiv:astro-ph/0304237},
  year   = {2011}
}

Comments

Revised version, accepted by A&A. New section and figures added