Further evidence for a merger in Abell 2218 from an XMM-Newton observation
arXiv:astro-ph/0502322 · doi:10.1051/0004-6361:20041415
Abstract
(Abridged) The galaxy cluster Abell 2218, at z=0.171, is well-known for the discrepancy between mass estimates derived from X-ray and strong lensing analyses. With the present XMM observation, we trace the gas density and temperature profiles out to a radius of ~ 1400 h_70^-1 kpc (approximately the virial radius of the cluster). The surface brightness profile is well fitted over three orders of magnitude with a beta model, with a core radius of 0.'95 and β=0.63. The projected temperature profile declines steeply with radius (by ~50%), and is well described by a polytrope with parameters t_0=8.09 keV and γ=1.15. The temperature map shows a pronounced peak in the central arcminute, with an increase of a factor of two (from ~5 to ~10 keV). The mass profile, calculated assuming hydrostatic equilibrium and spherical symmetry, is best fitted with a King approximation to an isothermal sphere, implying a dark matter distribution with a central core, in contrast with the cusped cores found in more obviously relaxed clusters. The X-ray mass is two times less than the strong lensing mass at r ~ 80 h_50^-1 kpc, although the agreement between X-ray and weak lensing mass measurements at larger radius (r ~ 400 h_50^-1 kpc) is slightly better. While the X-ray total mass estimates can vary by 30% depending on the mass model, all measurements are lower than the corresponding total mass from optical measurements. Given the X-ray results indicating disturbance of the intracluster gas, leading to a likely violation of the assumption of hydrostatic equilibrium, and the observed substructure in the optical, suggesting a line-of-sight merger, it is unlikely that the different mass estimates of this cluster can be reconciled, at least with standard modelling assumptions.
9 pages, 7 figures; to appear in A&A
References in corpus (4)
Cited by in corpus (23)
- Gravitational Lensing
- LoCuSS: Comparison of Observed X-ray and Lensing Galaxy Cluster Scaling Relations with Simulations
- The Cluster Mass Function from Weak Gravitational Lensing
- A Panoramic Mid-infrared Survey of Two Distant Clusters
- On the occurrence of Radio Halos in galaxy clusters - Insight from a mass-selected sample
- Structure and scaling of the entropy in nearby galaxy clusters
- A Chandra archival study of the temperature and metal abundance profiles in hot Galaxy Clusters at 0.1 < z < 0.3
- IR observations of MS 1054-03: Star Formation and its Evolution in Rich Galaxy Clusters
- Scaling relations and mass calibration of the X-ray luminous galaxy clusters at z~0.2: XMM-Newton observations
- Shocks and cold fronts in merging and massive galaxy clusters: new detections with Chandra
- Arc Statistics
- X-ray Substructure Studies of Four Galaxy Clusters using XMM-Newton Data
- Galaxy clusters enveloped by vast volumes of relativistic electrons
- Deep XMM and Chandra observations of ClJ1226.9+3332: A detailed X-ray mass analysis of a z=0.89 galaxy cluster
- A study of the Sunyaev-Zel'dovich increment using archival SCUBA data
- The Heated Core of the Radio-Quiet Galaxy Cluster A644
- Supermodel Analysis of Galaxy Clusters
- Search for Oxygen Emission from Warm-Hot Intergalactic Medium around A2218 with Suzaku
- The Mid-infrared View of Red Sequence Galaxies in Abell 2218 with AKARI
- Sunyaev-Zel'dovich observations of galaxy clusters out to the virial radius with the Arcminute Microkelvin Imager
- The mass profile and dynamical status of the z~0.8 galaxy cluster LCDCS 0504
- Preliminary Sunyaev Zel'dovich Observations of Galaxy Clusters with OCRA-p
- Systematic errors in the determination of Hubble constant due to the asphericity and non-isothermality of clusters of galaxies