On the Merging Cluster Abell 578 and Its Central Radio Galaxy 4C +67.13
K. Hagino, L. Stawarz, A. Siemiginowska, C.C. Cheung, D., Koziel-Wierzbowska, A. Szostek, G. Madejski, D.E. Harris, A. Simionescu, T., Takahashi

TL;DR
This study investigates the complex merging galaxy cluster Abell 578, revealing unusual radio morphology, active nuclei in the central galaxy pair, and evidence of a weak shock driven by the central radio galaxy's jet, using multi-wavelength data.
Contribution
It provides a detailed multi-wavelength analysis of a merging galaxy cluster with an unusual radio galaxy, highlighting shock features and active nuclei at low accretion rates.
Findings
Detection of a weak shock with Mach number ~1.3 near the radio galaxy
Active nuclei in both galaxies of the central pair at low accretion rates
Evidence of gas compression and heating associated with the radio jet activity
Abstract
Here we analyze radio, optical, and X-ray data for a peculiar cluster Abell 578. This cluster is not fully relaxed and consists of two merging sub-systems. The brightest cluster galaxy, CGPG 0719.8+6704, is a pair of interacting ellipticals with projected separation 10 kpc, the brighter of which hosts the radio source 4C +67.13. The Fanaroff-Riley type-II radio morphology of 4C +67.13 is unusual for central radio galaxies in local Abell clusters. Our new optical spectroscopy revealed that both nuclei of the CGPG 0719.8+6704 pair are active, albeit at low accretion rates corresponding to the Eddington ratio (for the estimated black hole masses of and ). The gathered X-ray ({\it Chandra}) data allowed us to confirm and to quantify robustly the previously noted elongation of the gaseous atmosphere in the dominant…
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