A BCG with offset cooling: is the AGN feedback cycle broken in A2495?
arXiv:1910.05363 · doi:10.3847/1538-4357/ab4808
Abstract
We present a combined radio/X-ray analysis of the poorly studied galaxy cluster Abell 2495 (z=0.07923) based on new EVLA and Chandra data. We also analyze and discuss Halpha emission and optical continuum data retrieved from the literature. We find an offset of 6 kpc between the cluster BCG (MCG+02-58-021) and the peak of the X-ray emission, suggesting that the cooling process is not taking place on the central galaxy nucleus. We propose that sloshing of the ICM could be responsible for this separation. Furthermore, we detect a second, 4 kpc offset between the peak of the Halpha emission and that of the X-ray emission. Optical images highlight the presence of a dust filament extending up to 6 kpc in the cluster BCG, and allow us to estimate a dust mass within the central 7 kpc of 1.7e+5 Msun. Exploiting the dust to gas ratio and the L_Halpha-M_mol relation, we argue that a significant amount (up to 10^9 Msun) of molecular gas should be present in the BCG of this cluster. We also investigate the presence of ICM depressions, finding two putative systems of cavities; the inner pair is characterized by t age = 18 Myr and P cav = 1.2e+43 erg/s, the outer one by t age = 53 Myr and P cav = 5.6e+42 erg/s. Their age difference appears to be consistent with the free-fall time of the central cooling gas and with the offset timescale estimated with the Halpha kinematic data, suggesting that sloshing is likely playing a key role in this environment. Furthermore, the cavities' power analysis shows that the AGN energy injection is able to sustain the feedback cycle, despite cooling being offset from the BCG nucleus.
19 pages, 18 total figures (grouped into 16 in the paper). Accepted by ApJ
References in corpus (13)
- Heating Hot Atmospheres with Active Galactic Nuclei
- Shocks and cold fronts in galaxy clusters
- Chandra temperature profiles for a sample of nearby relaxed galaxy clusters
- An Infrared Survey of Brightest Cluster Galaxies. II: Why are Some Brightest Cluster Galaxies Forming Stars?
- An Entropy Threshold for Strong H-alpha and Radio Emission in the Cores of Galaxy Clusters
- Regulation of star formation in giant galaxies by precipitation, feedback, and conduction
- CLASH: The Concentration-Mass Relation of Galaxy Clusters
- X-ray and Sunyaev-Zel'dovich Effect Measurements of the Gas Mass Fraction in Galaxy Clusters
- Collisional heating as the origin of filament emission in galaxy clusters
- An infrared survey of brightest cluster galaxies: Paper I
- A Non-thermal Study of the Brightest Cluster Galaxy NGC 1275 - The Gamma-Radio Connection Over Four Decades
- An imaging survey of a uniform sample of Brightest Cluster Galaxies and Intracluster Light
- A Study of High-redshift AGN Feedback in SZ Cluster Samples
Cited by in corpus (3)
- Evidence of runaway gas cooling in the absence of supermassive black hole feedback at the epoch of cluster formation
- A Chandra study of Abell 795 -- a sloshing cluster with a FR0 radio galaxy at its center
- The central FR0 in the sloshing cluster Abell 795: Indications of mechanical feedback from Chandra data