The Sunyaev-Zel'dovich Effect as a Probe of Ωo
Domingos Barbosa, James G. Bartlett, Alain Blanchard, Jamila Oukbir
Abstract
We examine how the Sunyaev-Zel'dovich (SZ) effect of clusters can probe Ωo. Using self-consistent models of X-ray clusters in the context of hierarchical models of structure formation, we show that both the mean Compton y parameter and the number of clusters observed via the SZ effect strongly depend on Ωo. These quantities are higher in open cosmological models due to the earlier epoch of structure formation. Specifically, we compare two models which are able to reproduce the present abundance of X-ray clusters, one for Ωo=0.2 and the other Ω= 1. For Ωo=0.2, exceeds the current FIRAS limit of 1.5×10-5. Also, the SZ redshift source distribution considerably differs in the two cosmological models. Thus, these results show that both an improvement in our knowledge of CMB spectral distortions and the realization of millimeter surveys to look for SZ sources over a large area of the sky should produce interesting constraints on Ωo and on the evolution of the baryonic fractionof virialized structures.
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