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AGN feedback in action in the molecular gas ring of the Seyfert galaxy NGC 7172

Abstract:
We present new ALMA observations of the CO(3-2) transition and 854micron continuum at 0.06-0.3" resolution, together with new VLT/SINFONI observations of NGC7172. This is a luminous (bolometric luminosity of ~10^44 erg/s) Seyfert galaxy that belongs to the Galaxy Activity, Torus, and Outflow Survey (GATOS). The CO(3-2) observations reveal the presence of a highly inclined cold molecular gas ring with an approximate radius of 3-4"~540-720 pc, which is likely associated with an inner Lindblad resonance of a putative stellar bar. There are noncircular motions in the VLT/SINFONI [SiVI]1.96micron and H2 at 2.12micron, and ALMA CO(3-2) velocity fields. After subtracting the stellar velocity field, we detected [SiVI] blueshifted velocities of a few hundred km/s to the south of the AGN. They trace outflowing ionized gas outside the plane of the galaxy and out to projected distances of ~200 pc. The CO(3-2) position-velocity diagram along the kinematic minor axis displays noncircular motions with observed velocities of up to ~150 km/s. Assuming that these are taking place in the disk of the galaxy, the observed velocity signs imply that the molecular gas ring is not only rotating but also outflowing. We derived an integrated cold molecular gas mass outflow rate of ~40 Msun/yr for the ring. Using the 854micron map, we resolved a 32 pc radius torus with a gas mass of 8x10^5 Msun. These torus properties are similar to other Seyfert galaxies in the GATOS sample. We measured a decreased cold molecular gas concentration in the nuclear-torus region relative to the circumnuclear region when compared to other less luminous Seyfert galaxies. We conclude that the effects of AGN feedback in NGC7172, which are likely caused by the AGN wind and/or the moderate luminosity radio jet, are seen as a large-scale outflowing molecular gas ring and accompanying redistribution of molecular gas in the nuclear regions.Comment: Accepted for publication to A&
Publication status:
Published
Peer review status:
Peer reviewed

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Author
ORCID:
0000-0001-6794-2519
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Role:
Author
ORCID:
0000-0003-0444-6897
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Author
ORCID:
0000-0002-4005-9619
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ORCID:
0000-0002-2125-4670
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Role:
Author
ORCID:
0000-0003-2658-7893


Publisher:
EDP Sciences
Journal:
Astronomy & Astrophysics More from this journal
Volume:
675
Pages:
A88-A88
Publication date:
2023-05-25
Acceptance date:
2023-05-22
DOI:
EISSN:
1432-0746
ISSN:
0004-6361


Language:
English
Keywords:
Pubs id:
1494207
Local pid:
pubs:1494207
Source identifiers:
W4378193968
Deposit date:
2026-05-11
ARK identifier:
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