Sizes and Kinematics of Extended Narrow-Line Regions in Luminous Obscured AGN Selected by Broadband Images
Ai-Lei Sun, Jenny E. Greene, Nadia L. Zakamska

TL;DR
This study investigates the sizes and kinematics of extended narrow-line regions in luminous obscured AGN, revealing how outflows and region sizes relate to AGN luminosity and episodic activity over millions of years.
Contribution
It provides new measurements of NLR sizes and outflow regions in a sample of nearby luminous AGN, and proposes a model of episodic AGN activity driving energy-conserving outflows.
Findings
NLR size scales with mid-IR luminosity up to ~10 kpc
High occurrence of outflows with broad [OIII] linewidths in the sample
Outflow energy efficiency varies widely, 0.01%-30%
Abstract
To study the impact of active galactic nuclei (AGN) feedback on the galactic ISM, we present Magellan long-slit spectroscopy of 12 luminous nearby type 2 AGN (L_bol~10^{45.0-46.5} erg/s, z~0.1). These objects are selected from a parent sample of spectroscopically identified AGN to have high [OIII]{\lambda}5007 and WISE mid-IR luminosities and extended emission in the SDSS r-band images, suggesting the presence of extended [OIII]{\lambda}5007 emission. We find spatially resolved [OIII] emission (2-35 kpc from the nucleus) in 8 out of 12 of these objects. Combined with samples of higher luminosity type 2 AGN, we confirm that the size of the narrow-line region (R_NLR) scales with the mid-IR luminosity until the relation flattens at ~10 kpc. Nine out of 12 objects in our sample have regions with broad [OIII] linewidths (w_80>600 km/s), indicating outflows. We define these regions as the…
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