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Quasar feedback survey: multiphase outflows, turbulence, and evidence for feedback caused by low power radio jets inclined into the galaxy disc

Authors :
A Girdhar
C M Harrison
V Mainieri
A Bittner
T Costa
P Kharb
D Mukherjee
F Arrigoni Battaia
D M Alexander
G Calistro Rivera
C Circosta
C De Breuck
A C Edge
E P Farina
D Kakkad
G B Lansbury
S J Molyneux
J R Mullaney
Silpa S
A P Thomson
S R Ward
Source :
Monthly notices of the Royal Astronomical Society, 2022, Vol.512(2), pp.1608-1628 [Peer Reviewed Journal]
Publication Year :
2022
Publisher :
Oxford University Press (OUP), 2022.

Abstract

We present a study of a luminous, z=0.15, type-2 quasar (log [L([OIII])/(erg/s)]=42.8) from the Quasar Feedback Survey. It is classified as 'radio-quiet' (log [L(1.4 GHz)/(W/Hz)]=23.8); however, radio imaging reveals ~1 kpc low-power jets (log [Pjet/(erg/s)]=44) inclined into the plane of the galaxy disk. We combine MUSE and ALMA observations to map stellar kinematics and ionised and molecular gas properties. The jets are seen to drive galaxy-wide bi-conical turbulent outflows, reaching W80 = 1000-1300 km/s, in the ionised phase (traced via optical emission-lines), which also have increased electron densities compared to the quiescent gas. The turbulent gas is driven perpendicular to the jet axis and is escaping along the galaxy minor axis, reaching 7.5 kpc on both sides. Traced via CO(3-2) emission, the turbulent material in molecular gas phase is one-third as spatially extended and has 3 times lower velocity-dispersion as compared to ionised gas. The jets are seen to be strongly interacting with the interstellar medium (ISM) through enhanced ionised emission and disturbed/depleted molecular gas at the jet termini. We see further evidence for jet-induced feedback through significantly higher stellar velocity-dispersion aligned, and co-spatial with, the jet axis (<br />Accepted for publication in MNRAS. Main manuscript has 21 pages with 8 figures. Supplementary material is available for download under "Ancillary files" or by downloading the source file listed under "Other formats"

Details

ISSN :
13652966 and 00358711
Volume :
512
Database :
OpenAIRE
Journal :
Monthly Notices of the Royal Astronomical Society
Accession number :
edsair.doi.dedup.....d89b039a9259b58f713f803521a5cf1b
Full Text :
https://doi.org/10.1093/mnras/stac073