Properties of the double beta model for intracluster gas
arXiv:astro-ph/0006131 · doi:10.1046/j.1365-8711.2000.03753.x
Abstract
We present an extensive study of the double beta model for the X-ray surface brightness profiles of clusters, and derive analytically the gas density and total masses of clusters under the hydrostatic equilibrium hypothesis. It is shown that the employment of the double beta model instead of the conventional single beta model can significantly improve the goodness of fit to the observed X-ray surface brightness profiles of clusters, which will in turn lead to a better determination of the gas and total mass distributions in clusters. In particular, the observationally fitted beta parameter for the extended component in a double beta model may become larger. This opens a new possibility of resolving the long-standing beta discrepancy for clusters. Using an ensemble of 33 ROSAT PSPC observed clusters drawn from the Mohr, Mathiesen & Evrard (1999) sample, we find that the asymptotic value of beta_{fit} is (0.83+-0.33) at large radii, consistent with both the average spectroscopic parameter beta_{spec}=(0.78+-0.37) and the result given by numerical simulations.
9 pages, 6 figures, accepted for publication in MNRAS
References in corpus (2)
Cited by in corpus (24)
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- The Dynamic Evolution of Young Extragalactic Radio Sources
- Testing the Low-Mass End of X-Ray Scaling Relations with a Sample of Chandra Galaxy Groups
- Entropy Profiles in the Cores of Cooling Flow Clusters of Galaxies
- Mass and Gas Profiles in A1689: Joint X-ray and Lensing Analysis
- Nonextensive theory of dark matter and gas density profiles
- The Insignificance of Global Reheating in the Abell 1068 Cluster: X-Ray Analysis
- Star formation efficiency in galaxy clusters
- On the influence of non-thermal pressure on the mass determination of galaxy clusters
- Chandra observation of Abell 1689: New determination of mass distribution and comparison to lensing measurements
- Mass distribution in the most X-ray-luminous galaxy cluster RX J1347.5-1145 studied with XMM-Newton
- XMM-Newton and Chandra Observations of Abell 2626: Interacting Radio Jets and Cooling Core with Jet Precession?
- Synthetic Observations of Simulated AGN Jets: X-ray Cavities
- AC 114: a cluster with a soft X-ray tail
- Chandra X-Ray Spectroscopy and Imaging of the Galaxy Cluster PKS 0745-191
- Supermodel Analysis of Galaxy Clusters
- Merging cold front and AGN feedback in the peculiar galaxy cluster Abell 2626
- The mystery of the 'Kite' radio source in Abell 2626: insights from new Chandra observations
- Jointly fitting weak lensing, X-ray and Sunyaev-Zel'dovich data to constrain scalar-tensor theories with clusters of galaxies
- The Halo Mass-Temperature Relation for Clusters, Groups, and Galaxies
- Effervescent heating: constraints from nearby cooling flow clusters observed with XMM-Newton
- Peering Into the Extended X-ray Emission on Megaparsec Scale in 3C 187
- Physical cool-core condensation radius in massive galaxy clusters
- Radial density and temperature profiles of the intracluster gas constructed jointly from the X-ray surface brightness measurement and the universal density profile