Abell 746: A highly disturbed cluster undergoing multiple mergers
Abstract
We present deep XMM-Newton, Karl Jansky Very Large Array, and upgraded Giant Metrewave Radio Telescope observations of Abell 746, a cluster that hosts a plethora of diffuse emission sources that provide evidence for the acceleration of relativistic particles. Our new XMM-Newton images reveal a complex morphology of the thermal gas with several substructures. We observe an asymmetric temperature distribution across the cluster: the southern regions exhibit higher temperatures, reaching ~9 keV, while the northern regions have lower temperatures (below 4 keV), likely due to a complex merger. We find evidence of four surface brightness edges, of which three are merger-driven shock fronts. Combining our new data with the published LOw-Frequency ARray observations has unveiled the nature of diffuse sources in this system. The bright northwest relic shows thin filaments and high degree of polarization with aligned magnetic field vectors. We detect a density jump, aligned with the fainter relic to the north. To the south, we detect high-temperature regions, consistent with shock-heated regions and density jump coincident with the northern tip of the southern radio structure. Its integrated spectrum shows a high-frequency steepening. Lastly, we find that the cluster hosts large-scale radio halo emission. The comparison of the thermal and nonthermal emission reveals an anticorrelation between the bright radio and X-ray features at the center. Our findings suggest that Abell 746 is a complex system that involves multiple mergers.
Cite
@article{arxiv.2309.01716,
title = {Abell 746: A highly disturbed cluster undergoing multiple mergers},
author = {K. Rajpurohit and L. Lovisari and A. Botteon and C. Jones and W. Forman and E. O'Sullivan and R. J. van Weeren and K. HyeongHan and A. Bonafede and M. J. Jee and F. Vazza and G. Brunetti and H. Cho and P. Domínguez-Fernández and A. Stroe and K. Finner and M. Brüggen and J. M. Vrtilek and L. P. David and G. Schellenberger and D. Wittman and G. Lusetti and R. Kraft and F. de. Gasperin},
journal= {arXiv preprint arXiv:2309.01716},
year = {2024}
}
Comments
22 pages, 13 figures, accepted for publication in ApJ