SUNYAEV-ZELDOVICH PROFILES FOR CLUSTERS AND GROUPS OF GALA XIES
2008
The Sunyaev-Zeldovich (SZ) effect gives a measure of the thermal energy and electron pressure in groups and clusters of galaxies. In the near future SZ surveys will map hundreds of systems, shedding light on the pressure distribution in the systems. The thermal energy is related to the total mass of a system of galaxies, but it is only a projection that is observed through the SZ eff ect. A model for the 3D distribution of pressure is needed to link the SZ signal to the total mass of the system. In this work we construct an empirical model for the 2D and 3D SZ profile, and compare it to a set of realistic high resolution SPH simulations of galaxy clusters and groups, and to a stacked SZ profile for massive cl usters derived from WMAP data. Furthermore, we combine observed temperature profiles with dark matter po tentials to yield an additional constraint, under the assumption of hydrostatic equilibrium. We find a very tig ht correlation between the characteristic scale in the model, the integrated SZ signal, and the total mass in the systems with a scatter of only 4%. The model only contains two free parameters, making it readily applicable even to low resolution SZ observations of galaxy clusters. A fitting routine for the model that can be applied t o observed or simulated data can be found at http://www.phys.au.dk/~haugboel/software.shtml. Subject headings:
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