The Mysterious Merger of NGC6868 and NGC6861 in the Telescopium Group
arXiv:1001.2567 · doi:10.1088/0004-637X/711/2/1316
Abstract
We use Chandra X-ray observations of the hot gas in and around NGC6868 and NGC6861 in the Telescopium galaxy group (AS0851) to probe the interaction history between these galaxies. Mean surface brightness profiles for NGC6868 and NGC6861 are each well described by double beta-models, suggesting that they are each the dominant galaxy in a galaxy subgroup about to merge. Surface brightness and temperature maps of the brightest group galaxy NGC6868 show a cold front edge ~23 kpc to the north, and a cool 0.62 keV spiral-shaped tail to the south. Analysis of the temperature and density across the cold front constrains the relative motion between NGC6868 and the ambient group gas to be at most transonic; while the spiral morphology of the tail strongly suggests that the cold front edge and tail are the result of gas sloshing due to the subgroup merger. The cooler central region of NGC6861 is surrounded by a sheath of hot gas to the east and hot, bifurcated tails of X-ray emission to the west and northwest. We discuss supersonic infall of the NGC6861 subroup, sloshing from the NGC6868 and NGC6861 subgroup merger, and AGN heating as possible explanations for these features, and discuss possible scenarios that may contribute to the order of magnitude discrepancy between the Margorrian and black hole mass - sigma predictions for its central black hole.
17 pages, 23 figures, submitted to ApJ
References in corpus (15)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Shocks and cold fronts in galaxy clusters
- Direct cosmological simulations of the growth of black holes and galaxies
- Hot and cold gas accretion and feedback in radio-loud active galaxies
- The origin of cold fronts in the cores of relaxed galaxy clusters
- The DEEP2 Galaxy Redshift Survey: The Relationship Between Galaxy Properties and Environment at z ~ 1
- Do radio core-halos and cold fronts in non major merging clusters originate from the same gas sloshing?
- Temperature and abundance profiles of hot gas in galaxy groups - I. Results and statistical analysis
- Chandra's View of the Ram Pressure Stripped Galaxy M86
- Isotropic AGN Heating with Small Radio Quiet Bubbles in the NGC 5044 Group
- Deep Chandra Observations of Edges and Bubbles in the NGC 5846 Galaxy Group
- Core Gas Sloshing in Abell 1644
- On the Feedback Efficiency of Active Galactic Nuclei
- Gas Sloshing and Bubbles in the Galaxy Group NGC 5098
- The Active Nucleus of IC4970: A Nearby Example of Merger-Induced Cold-Gas Accretion
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- A Chandra Study of the NGC7618/UGC12491 Major Group Merger at Apogee: Multiple Cold Fronts, Boxy Wings, Filaments, and Arc-shaped Slingshot Tails
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