Merging Cold Fronts in the Galaxy Pair NGC 7619 and NGC 7626
arXiv:0811.1217 · doi:10.1088/0004-637X/696/2/1431
Abstract
We present results from {\it Chandra} observations of the galaxy pair NGC 7619 and NGC 7626, the two dominant members of the Pegasus group. The X-ray images show a brightness edge associated with each galaxy, which we identify as merger cold fronts. The edges are sharp, and the axes of symmetry of the edges are roughly anti-parallel, suggesting that these galaxies are falling towards one another in the plane of the sky. The detection of merger cold fronts implies a merging subgroup scenario, since the alternative is that the galaxies are falling into a pre-existing keV halo without a dominant galaxy of its own, and such objects are not observed. We estimate the 3D velocities from the cold fronts and show that the velocity vectors are indeed most likely close to the plane of the sky, with a relative velocity of $\sim1190\kms$. The relative velocity is consistent with what is expected from the infall of two roughly equal mass subgroups whose total viral mass equals that of the Pegasus group. We conclude that the Pegasus cluster is currently forming from a major merger of two subgroups, dominated by NGC 7619 and NGC 7626. NGC 7626 contains a strong radio source, a core with two symmetric jets and radio lobes. Although we find no associated structure in the X-ray surface brightness map, the temperature map reveals a clump of cool gas just outside the southern lobe, presumably entrained by the lobe, and an extension of cooler gas into the lobe itself. The jet axis is parallel with the projected direction of motion of NGC 7626 (inferred from the symmetry axis of the merger cold front), and the southern leading jet is foreshortened as compared to the northern trailing one, possibly due to the additional ram pressure the forward jet encounters.
11 pages, 9 figures. Accepted to ApJ. Minor changes to be consistent with accepted version
References in corpus (6)
- The statistics of LCDM Halo Concentrations
- The origin of cold fronts in the cores of relaxed galaxy clusters
- The Centers of Early-Type Galaxies with HST. VI. Bimodal Central Surface Brightness Profiles
- Tidally Triggered Star Formation in Close Pairs of Galaxies: Major and Minor Interactions
- Chandra's View of the Ram Pressure Stripped Galaxy M86
- X-ray Tail in NGC 7619
Cited by in corpus (25)
- A relationship between AGN jet power and radio power
- Shocks and Cavities from Multiple Outbursts in the Galaxy Group NGC 5813: A Window to AGN Feedback
- Heating the hot atmospheres of galaxy groups and clusters with cavities: the relationship between jet power and low-frequency radio emission
- A Very Deep Chandra Observation of Abell 2052: Bubbles, Shocks, and Sloshing
- A combined low-radio frequency/X-ray study of galaxy groups I. Giant Metrewave Radio Telescope observations at 235 MHz and 610 MHz
- The Complete Local Volume Groups Sample - I. Sample Selection and X-ray Properties of the High-Richness Subsample
- Deep Chandra Observations of the Extended Gas Sloshing Spiral in A2029
- Probing the Outskirts of the Early Stage Galaxy Cluster Merger A1750
- Deep Imaging of the HCG 95 Field.I.Ultra-diffuse Galaxies
- Gas Sloshing and Bubbles in the Galaxy Group NGC 5098
- Metal distribution in sloshing galaxy clusters: the case of A496
- Evidence of AGN feedback and sloshing in the X-ray luminous NGC 1550 galaxy group
- Sloshing cold fronts in galaxy groups and their perturbing disk galaxies: an X-ray, Optical and Radio Case Study
- The Megaparsec-scale Gas-sloshing Spiral in the Remnant Cool Core Cluster Abell 1763
- The Merger Environment of the WAT Hosting Cluster Abell 562
- Chandra Early-Type Galaxy Atlas
- VLA Radio Study of a Sample of Nearby X-ray and Optically Bright Early-Type Galaxies
- Building a cluster: shocks, cavities, and cooling filaments in the group-group merger NGC 6338
- The unusually weak and exceptionally steep radio relic in Abell 2108
- Active galactic nuclei synapses: X-ray versus optical classifications using artificial neural networks
- Gas sloshing and cold fronts in pre-merging galaxy cluster Abell 98
- Merger Signatures in the Galaxy Cluster Abell 98
- The Hot Interstellar Medium
- Sloshing Cold Fronts in Galaxy Cluster Abell 2566
- Stellar systems in the direction of Pegasus I - I. Low surface brightness galaxies