Cosmological Implications of the BIMA 30 Ghz Sunyaev-Zel'dovich Effect Galaxy Cluster Survey
arXiv:astro-ph/0208005 · doi:10.1086/344749
Abstract
We explore the cosmological implications of 7 deep survey fields observed at the Berkeley-Illinois-Maryland Association (BIMA) Array with 30 GHz receivers. These observations probe the Cosmic Microwave Background anisotropy on scales corresponding to l=5500, and an earlier analysis of these data detected no galaxy clusters. We use numerical cluster simulations and mock observations to characterize the cluster detection efficiency for each of the BIMA fields. With these detection efficiencies we derive constraints on the cosmological parmaters OmegaM and sigma8, ruling out those models which overproduce galaxy clusters. Using only these seven BIMA fields, we calculate a 2sigma upper limit of sigma8 < 1.00OmegaM**(-0.43OmegaM-0.22) for flat models with 0.1<OmegaM<1. When the power spectrum of density fluctuations is COBE normalized, we find OmegaM < 0.63 at 95% confidence level for flat models. This constraint includes our estimate of the large uncertainties in the SZE flux-virial mass relationship as well as published uncertainties in the Hubble parameter, the COBE power spectrum normalization and the primordial power spectrum index. In addition, we account for the effects of sample variance. Thus, we conclude that the non-detections are to be expected in a low OmegaM universe, given the sensitivity and solid angle of the deepest SZE survey to date.
Latex 11 pages and 6 figures, submitted to ApJ June 28, 2002
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- Cosmic Microwave Background Anisotropies
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