The contribution of non-central radio galaxies to AGN feedback in rich galaxy clusters
arXiv:2204.06102 · doi:10.1093/mnras/stac1064
Abstract
We present a combined radio/X-ray study of six massive galaxy clusters, aimed at determining the potential for heating of the intra-cluster medium (ICM) by non-central radio galaxies. Since X-ray cavities associated with the radio lobes of non-central galaxies are generally not detectable, we use Giant Metrewave Radio Telescope 610~MHz observations to identify jet sources and estimate their size, and Chandra data to estimate the pressure of the surrounding ICM. In the radio, we detect 4.5% of galaxies above the spectroscopic survey limit (M*K+2.0) of the Arizona cluster redshift survey (ACReS) which covers five of our six clusters. Approximately one tenth of these are extended radio sources. Using star formation (SF) rates determined from mid-infrared data, we estimate the expected contribution to radio luminosity from the stellar population of each galaxy, and find that most of the unresolved or poorly-resolved radio sources are likely star formation dominated. The relatively low frequency and good spatial resolution of our radio data allows us to trace star formation emission down to galaxies of stellar mass ~10^9.5 Msol. We estimate the enthalpy of the (AGN dominated) jet/lobe and tailed sources, and place limits on the energy available from unresolved radio jets. We find jet powers in the range ~10^43-10^46 erg/s, comparable to those of brightest cluster galaxies. Our results suggest that while cluster-central sources are the dominant factor balancing ICM cooling over the long term, non-central sources may have a significant impact, and that further investigation is possible and warranted.
Accepted for publication in MNRAS, 17 pages + 8 pages of appendices
References in corpus (19)
- Heating Hot Atmospheres with Active Galactic Nuclei
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- On the prevalence of radio-loud AGN in brightest cluster galaxies: implications for AGN heating of cooling flows
- Cosmology and Astrophysics from Relaxed Galaxy Clusters II: Cosmological Constraints
- Radial temperature profiles for a large sample of galaxy clusters observed with XMM-Newton
- An XMM-Newton study of the environments, particle content and impact of low-power radio galaxies
- Feedback from Active Galactic Nuclei in Galaxy Groups
- Radio Sources in Galaxy Clusters: Radial Distribution, and 1.4 GHz and K-band Bivariate Luminosity Function
- The Cavity of Cygnus A
- Chandra Observations of Nuclear Outflows in the Elliptical Galaxy NGC4552 in the Virgo Cluster
- A volume-limited sample of X-ray galaxy groups and clusters - II. X-ray cavity dynamics
- LoCuSS: Scaling relations between galaxy cluster mass, gas, and stellar content
- A systematic search for X-ray cavities in galaxy clusters, groups, and elliptical galaxies
- Mapping the particle acceleration in the cool core of the galaxy cluster RX J1720.1+2638
- High-resolution VLA low radio frequency observations of the Perseus cluster: radio lobes, mini-halo and bent-jet radio galaxies
- Discovery of a giant radio fossil in the Ophiuchus galaxy cluster
- Signatures from a merging galaxy cluster and its AGN population: LOFAR observations of Abell 1682
- AGN feedback in the FR II galaxy 3C 220.1
- X-ray cavities in the hot corona of the lenticular galaxy NGC~4477