X-Ray Analysis of an Off-Axis Merger Stage Binary Galaxy Cluster: PSZ2 G279.79+39.09
arXiv:2601.22251
Abstract
We present an X-ray analysis of the merging galaxy cluster system PSZ2 G279.79+39.09 () using archival XMM-Newton and Chandra observations. The surface brightness image is bimodal, elongated east-west with a projected core separation of Mpc. We measure gas temperatures of 5.36 keV for the eastern subcluster (PSZ-E) and 5.44 keV for the western component (PSZ-W). Assuming isothermal intracluster gas, the hydrostatic masses are for PSZ-E and 14.54 for PSZ-W, implying a mass ratio of . PSZ-E shows X-ray concentration indices of and , together with a centroid shift of , indicating a disturbed halo that still hosts a compact cool core; PSZ-W is comparably disturbed even in its core. Both subclusters exhibit ICM asymmetries consistent with ram-pressure stripping, and PSZ-W displays an X-ray tail extending nearly to the outskirts of PSZ-E. The orientation and length of this tail support an off-axis merger geometry. Thermodynamic maps reveal a hot ( keV), high-pressure, high-entropy bridge between the cores. From the Rankine-Hugoniot temperature jump, we infer a Mach number , consistent with a weak merger shock propagating at km s. These results indicate a merger with a non-zero impact parameter, likely observed near core passage ( Gyr before or after), with the pre-pericenter scenario slightly preferred based on the projected separation and thermodynamic structure.
Published by the ApJ