A Joint Chandra and XMM-Newton View of Abell 3158: Massive Off-Centre Cool Gas Clump As A Robust Diagnostic of Merger Stage
arXiv:1001.0093 · doi:10.1111/j.1365-2966.2010.16264.x
Abstract
By analysing the Chandra and XMM-Newton archived data of the nearby galaxy cluster Abell 3158, which was reported to possess a relatively regular, relaxed morphology in the X-ray band in previous works, we identify a bow edge-shaped discontinuity in the X-ray surface brightness distribution at about kpc west of the X-ray peak. This feature is found to be associated with a massive, off-centre cool gas clump, and actually forms the west boundary of the cool clump. We find that the cool gas clump is moving at a subsonic velocity of ~700 km/s toward west on the sky plane. We exclude the possibility that this cool clump was formed by local inhomogeneous radiative cooling in the intra-cluster medium, due to the effectiveness of the thermal conduction on the time-scale of Gyr. Since no evidence for central AGN activity has been found in Abell 3158, and this cool clump bears many similarities to the off-centre cool gas clumps detected in other merging clusters in terms of their mass, size, location, and thermal properties (e.g. lower temperature and higher abundance as compared with the environment), we speculate that the cool clump in Abell 3158 was caused by a merger event, and is the remnant of the original central cool-core of the main cluster or the infalling sub-cluster. This idea is supported not only by the study of line-of-sight velocity distribution of the cluster member galaxies, but also by the study of gas entropy-temperature correlation. This example shows that the appearance of such massive, off-centre cool gas clumps can be used to diagnose the dynamical state of a cluster, especially when prominent shocks and cold fronts are absent.
Accepted by MNRAS; 12 pages, 6 figures
References in corpus (12)
- Constraints on the Self-Interaction Cross-Section of Dark Matter from Numerical Simulations of the Merging Galaxy Cluster 1E 0657-5
- The origin of cold fronts in the cores of relaxed galaxy clusters
- The impact of mergers on relaxed X-ray clusters - I. Dynamical evolution and emergent transient structures
- Statistics of X-ray observables for the cooling-core and non-cooling core galaxy clusters
- Probing the Dark Matter and Gas Fraction in Relaxed Galaxy Groups with X-ray observations from Chandra and XMM
- A High Fidelity Sample of Cold Front Clusters from the Chandra Archive
- A statistically-selected Chandra sample of 20 galaxy clusters -- II. Gas properties and cool-core/non-cool core bimodality
- Internal dynamics of the radio-halo cluster A2744
- Scaling relations and mass calibration of the X-ray luminous galaxy clusters at z~0.2: XMM-Newton observations
- A2163: Merger events in the hottest Abell galaxy cluster I. Dynamical analysis from optical data
- A Chandra Study of Temperature Substructures in Intermediate-Redshift Galaxy Clusters
- Chandra Observation of Abell 2065: An Unequal Mass Merger?
Cited by in corpus (8)
- The duty cycle of radio-mode feedback in complete samples of clusters
- The Onset of Thermally Unstable Cooling from the Hot Atmospheres of Giant Galaxies in Clusters - Constraints on Feedback Models
- X-Ray Studies of the Abell 3158 Galaxy Cluster with eROSITA
- The effect of cluster dynamical state on ram-pressure stripping
- The MeSsI (Merging Systems Identification) Algorithm & Catalogue
- Revealing A Head-on Major Merger in the Nearby NGC 6338 Group with Chandra and VLA observations
- Deprojecting galaxy-cluster cold fronts: evidence for bulk, magnetised spiral flows
- Advection by large-scale spiral flows in galaxy clusters