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The small observed scale of AGN-driven outflows, and inside-out disc quenching

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posted on 2016-11-18, 11:58 authored by K. Zubovas, A. King
Observations of massive outflows with detectable central active galactic nuclei (AGN) typically find them within radii ≲10 kpc. We show that this apparent size restriction is a natural result of AGN driving if this process injects total energy only of the order of the gas binding energy to the outflow, and the AGN varies over time (‘flickers’) as suggested in recent work. After the end of all AGN activity, the outflow continues to expand to larger radii, powered by the thermal expansion of the remnant-shocked AGN wind. We suggest that on average, outflows should be detected further from the nucleus in more massive galaxies. In massive gas-rich galaxies, these could be several tens of kpc in radius. We also consider the effect that pressure of such outflows has on a galaxy disc. In moderately gas-rich discs, with gas-to-baryon fraction <0.2, the outflow may induce star formation significant enough to be distinguished from quiescent by an apparently different normalization of the Kennicutt–Schmidt law. The star formation enhancement is probably stronger in the outskirts of galaxy discs, so coasting outflows might be detected by their effects upon the disc even after the driving AGN has shut off. We compare our results to the recent inference of inside-out quenching of star formation in galaxy discs.

Funding

KZ is funded by the Research Council Lithuania through the National Science Programme grant no. LAT-09/2016. Astrophysics research at the University of Leicester is funded by an STFC Consolidated grant.

History

Citation

Monthly Notices of the Royal Astronomical Society, (November 11, 2016) 462 (4): 4055-4066.

Author affiliation

/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/Department of Physics and Astronomy

Version

  • VoR (Version of Record)

Published in

Monthly Notices of the Royal Astronomical Society

Publisher

Oxford University Press (OUP), Royal Astronomical Society

issn

0035-8711

eissn

1365-2966

Acceptance date

2016-07-25

Available date

2016-11-18

Publisher version

http://mnras.oxfordjournals.org/content/462/4/4055

Language

en

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