An ALMA CO(1-0) survey of the 2Jy sample: large and massive molecular disks in radio AGN host galaxies

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Hauptverfasser: Tadhunter, C., Oosterloo, T., Morganti, R., Almeida, C. Ramos, Martín, M. Villar, Emonts, B., Dicken, D.
Format: Preprint
Veröffentlicht: 2024
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author Tadhunter, C.
Oosterloo, T.
Morganti, R.
Almeida, C. Ramos
Martín, M. Villar
Emonts, B.
Dicken, D.
author_facet Tadhunter, C.
Oosterloo, T.
Morganti, R.
Almeida, C. Ramos
Martín, M. Villar
Emonts, B.
Dicken, D.
contents The jets of radio AGN provide one of the most important forms of AGN feedback, yet considerable uncertainties remain about how they are triggered. Since the molecular gas reservoirs of the host galaxies can supply key information about the dominant triggering mechanism(s), here we present Atacama Large Millimeter/sub-millimeter Array (ALMA) CO(1-0) observations of a complete sample of 29 powerful radio AGN ($P_{1.4GHz} > 10^{25}$ W Hz$^{-1}$ and $0.05 < z < 0.3$) with an angular resolution of about 2 - 3 arcsec (corresponding to 2 - 8 kpc). We detect molecular gas with masses in the range $10^{8.9} < M_{H_2} < 10^{10.2}$ M$_{\odot}$ in the early-type host galaxies of 10 targets, while for the other 19 sources we derive upper limits. The detection rate of objects with such large molecular masses -- $34\pm9$% -- is higher than in the general population of non-active early-type galaxies (ETG: $<$10%). The kinematics of the molecular gas are dominated in most cases by rotating disk-like structures, with diameters up to 25 kpc. Compared with the results for samples of quiescent ETG in the literature, we find a larger fraction of more massive, more extended and less settled molecular gas structures. In most of the CO-detected sources, the results are consistent with triggering of the AGN as the gas settles following a merger or close encounter with a gas-rich companion. However, in a minority of objects at the centres of rich clusters of galaxies, the accretion of gas cooling from the hot X-ray halos is a plausible alternative to galaxy interactions as a triggering mechanisms.
format Preprint
id arxiv_https___arxiv_org_abs_2407_10970
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An ALMA CO(1-0) survey of the 2Jy sample: large and massive molecular disks in radio AGN host galaxies
Tadhunter, C.
Oosterloo, T.
Morganti, R.
Almeida, C. Ramos
Martín, M. Villar
Emonts, B.
Dicken, D.
Astrophysics of Galaxies
The jets of radio AGN provide one of the most important forms of AGN feedback, yet considerable uncertainties remain about how they are triggered. Since the molecular gas reservoirs of the host galaxies can supply key information about the dominant triggering mechanism(s), here we present Atacama Large Millimeter/sub-millimeter Array (ALMA) CO(1-0) observations of a complete sample of 29 powerful radio AGN ($P_{1.4GHz} > 10^{25}$ W Hz$^{-1}$ and $0.05 < z < 0.3$) with an angular resolution of about 2 - 3 arcsec (corresponding to 2 - 8 kpc). We detect molecular gas with masses in the range $10^{8.9} < M_{H_2} < 10^{10.2}$ M$_{\odot}$ in the early-type host galaxies of 10 targets, while for the other 19 sources we derive upper limits. The detection rate of objects with such large molecular masses -- $34\pm9$% -- is higher than in the general population of non-active early-type galaxies (ETG: $<$10%). The kinematics of the molecular gas are dominated in most cases by rotating disk-like structures, with diameters up to 25 kpc. Compared with the results for samples of quiescent ETG in the literature, we find a larger fraction of more massive, more extended and less settled molecular gas structures. In most of the CO-detected sources, the results are consistent with triggering of the AGN as the gas settles following a merger or close encounter with a gas-rich companion. However, in a minority of objects at the centres of rich clusters of galaxies, the accretion of gas cooling from the hot X-ray halos is a plausible alternative to galaxy interactions as a triggering mechanisms.
title An ALMA CO(1-0) survey of the 2Jy sample: large and massive molecular disks in radio AGN host galaxies
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2407.10970