The KMOS AGN Survey at High redshift (KASHz): the prevalence and drivers of ionised outflows in the host galaxies of X-ray AGN
C. M. Harrison (Durham University), D. M. Alexander, J. R. Mullaney,, J. P. Stott, A. M. Swinbank, V. Arumugam, F. E. Bauer, R. G. Bower, A. J., Bunker, R. M. Sharples

TL;DR
This study uses integral-field spectroscopy to analyze ionised gas outflows in high-redshift X-ray AGN, revealing that powerful outflows are common and driven by AGN activity, with little evolution over cosmic time.
Contribution
First large-scale survey of ionised outflows in high-redshift X-ray AGN, demonstrating their prevalence and connection to AGN luminosity.
Findings
~50% of targets show outflow velocities >600 km/s
Higher luminosity AGN have twice the incidence of extreme outflows
Outflow prevalence shows little evolution from low to high redshift
Abstract
We present the first results from the KMOS AGN Survey at High redshift (KASHz), a VLT/KMOS integral-field spectroscopic survey of z>0.6 AGN. We present galaxy-integrated spectra of 89 X-ray AGN (Lx=10^42-10^45 erg/s), for which we observed [O III] (z=1.1-1.7) or Halpha emission (z=0.6-1.1). The targets have X-ray luminosities representative of the parent AGN population and we explore the emission-line luminosities as a function of X-ray luminosity. For the [O III] targets, ~50 per cent have ionised gas velocities indicative of gas that is dominated by outflows and/or highly turbulent material (i.e., overall line-widths >~600 km/s). The most luminous half (i.e., Lx>6x10^43 erg/s) have a >~2 times higher incidence of such velocities. On the basis of our results, we find no evidence that X-ray obscured AGN are more likely to host extreme kinematics than unobscured AGN. Our KASHz sample has…
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