Probing the Dark Matter and Gas Fraction in Relaxed Galaxy Groups with X-ray observations from Chandra and XMM
Fabio Gastaldello, David A. Buote, Philip J. Humphrey, Luca Zappacosta, James S. Bullock, Fabrizio Brighenti, William G. Mathews
Abstract
We present radial mass profiles within 0.3 rvir for 16 relaxed galaxy groups-poor clusters (kT range 1-3 keV) selected for optimal mass constraints from the Chandra and XMM data archives. After accounting for the mass of hot gas, the resulting mass profiles are described well by a two-component model consisting of dark matter (DM), represented by an NFW model, and stars from the central galaxy. The stellar component is required only for 8 systems, for which reasonable stellar mass-to-light ratios (M/LK) are obtained, assuming a Kroupa IMF. Modifying the NFW dark matter halo by adiabatic contraction does not improve the fit and yields systematically lower M/LK. In contrast to previous results for massive clusters, we find that the NFW concentration parameter (cvir) for groups decreases with increasing Mvir and is inconsistent with no variation at the 3 sigma level. The normalization and slope of the cvir-Mvir relation are consistent with the standard LambdaCDM cosmological model with sigma8 = 0.9. The small intrinsic scatter measured about the cvir-Mvir relation implies the groups represent preferentially relaxed, early forming systems. The mean gas fraction (f =0.05 +/- 0.01) of the groups measured within an overdensity Delta=2500 is lower than for hot, massive clusters, but the fractional scatter (sigmaf/f=0.2) for groups is larger, implying a greater impact of feedback processes on groups, as expected.
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