We have shown earlier that, contrary to popular belief, Einstein--de Sitter (E--deS) models can still fit the {\sl WMAP} data on the cosmic microwave background provided one adopts a low Hubble constant and relaxes the usual assumption that the primordial density perturbation is scale-free. The recent {\sl SDSS} measurement of the large-scale correlation function of luminous red galaxies at z∼0.35 has however provided a new constraint by detecting a `baryon acoustic peak'. Our best-fit E--deS models do possess a baryonic feature at a similar physical scale as the best-fit ΛCDM concordance model, but do not fit the new observations as well as the latter. In particular the shape of the correlation function in the range ∼10−100h−1 Mpc cannot be reproduced properly without violating the CMB angular power spectrum in the multipole range l∼100−1000. Thus, the combination of the CMB fluctuations and the shape of the correlation function up to ∼100h−1Mpc, if confirmed, does seem to require dark energy for a homogeneous cosmological model based on (adiabatic) inflationary perturbations.
@article{arxiv.astro-ph/0512085,
title = {Large-scale galaxy correlations as a test for dark energy},
author = {Alain Blanchard and Marian Douspis and Michael Rowan-Robinson and Subir Sarkar},
journal= {arXiv preprint arXiv:astro-ph/0512085},
year = {2008}
}
Comments
4 pages, 2 figures, revised version, accepted to A&A