Dynamical history of a binary cluster: Abell 3653
arXiv:1709.07925 · doi:10.1093/mnras/stx2081
Abstract
We study the dynamical structure of a bimodal galaxy cluster Abell 3653 at z=0.1089 by using combined optical and X-ray data. Observations include archival data from Anglo-Australian Telescope and X-ray observatories of XMM-Newton and Chandra. We draw a global picture for A3653 using galaxy density, X-ray luminosity and temperature maps. Galaxy distribution has a regular morphological shape at the 3 Mpc size. Galaxy density map shows an elongation EW direction, which perfectly aligns with the extended diffuse X-ray emission. We detect two dominant grouping around two brightest cluster galaxies (BCGs). The BCG1 (z=0.1099) can be associated with the main cluster A3653E, and a foreground subcluster A3563W concentrated at the BCG2 (z=0.1075). Both X-ray peaks are dislocated from BCGs by (35 kpc), which suggest an ongoing merger process. We measure the subclusters' gas temperatures 4.67 and 3.66 keV, respectively. Two-body dynamical analysis shows that A3653E & A3653W are very likely (93.5% probability) gravitationally bound. The highly favoured scenario suggests that two subclusters with the mass ratio of 1.4 are colliding close to the plane of sky (=17.61) with 2400 km , and will undergo core passage in 380 Myr. Temperature map also significantly shows a shock-heated gas (6.16 keV) in between the subclusters, which confirms the supersonic infalling scenario.
10 pages, 7 figures
References in corpus (7)
- Shocks and cold fronts in galaxy clusters
- A Catalog of Galaxy Clusters Observed by XMM-Newton
- Temperature structure of the intergalactic medium within seven nearby and bright clusters of galaxies observed with XMM-Newton
- Galaxy Activity in Merging Binary Galaxy Clusters
- The Large Peculiar Velocity of the cD Galaxy in Abell 3653
- Chandra and XMM-Newton Observations of the Bimodal Planck SZ-detected Cluster PLCKG345.40-39.34 (A3716) with High and Low Entropy Subcluster Cores
- Multicolor Photometry of the Merging Galaxy Cluster A2319: Dynamics and Star Formation Properties