Breaking the sigma8-Omegam degeneracy using the clustering of high-z X-ray AGN
Abstract
The clustering of X-ray selected AGN appears to be a valuable tool for extracting cosmological information. Using the recent high-precision angular clustering results of ~30000 XMM-Newton soft (0.5-2 keV) X-ray sources (Ebrero et al. 2009), which have a median redshift of z 1, and assuming a flat geometry, a constant in comoving coordinates AGN clustering evolution and the AGN bias evolution model of Basilakos et al. (2008), we manage to break the Omegam-sigma8 degeneracy. The resulting cosmological constraints are: Omegam=0.27 (+0.03 -0.05), w=-0.90 (+0.10 -0.16) and sigma8=0.74 (+0.14 -0.12), while the dark matter host halo mass, in which the X-ray selected AGN are presumed to reside, is M=2.50 (+0.50 -1.50) X 1013 h-1 M(solar). For the constant Lambda model (w=-1) we find Omegam=0.24 (+- 0.06) and sigma8=0.83 (+0.11 -0.16), in good agreement with recent studies based on cluster abundances, weak lensing and the CMB, but in disagreement with the recent bulk flow analysis.
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