SIMBAD references

2020MNRAS.498.4095N - Mon. Not. R. Astron. Soc., 498, 4095-4108 (2020/November-1)

The environmental dependence of X-ray AGN activity at z ∼ 0.4.

NOORDEH E., CANNING R.E.A., KING A., ALLEN S.W., MANTZ A., MORRIS R.G., EHLERT S., VON DER LINDEN A., BRANDT W.N., LUO B., XUE Y.Q. and KELLY P.

Abstract (from CDS):

We present an analysis of the X-ray active galactic nucleus (AGN) population in a sample of seven massive galaxy clusters in the redshift range 0.35 < z < 0.45. We utilize high-quality Chandra X-ray imaging to robustly identify AGN and precisely determine cluster masses and centroids. Follow-up VIsible Multi-Object Spectrograph optical spectroscopy allows us to determine which AGN are cluster members. Studying the subset of AGN with 0.5-8 keV luminosities >6.8 x 1042 erg s–1, within r <= 2r500 (approximately the virial radius), we find that the cluster AGN space density scales with cluster mass as ∼M–2.0+0.8–0.9. This result rules out zero mass dependence of the cluster X-ray AGN space density at the 2.5σ level. We compare our cluster X-ray AGN sample to a control field with identical selection and find that the cluster AGN fraction is significantly suppressed relative to the field when considering the brightest galaxies with V < 21.5. For fainter galaxies, this difference is not present. Comparing the X-ray hardness ratios of cluster member AGN to those in the control field, we find no evidence for enhanced X-ray obscuration of cluster member AGN. Lastly, we see tentative evidence that disturbed cluster environments may contribute to enhanced AGN activity.

Abstract Copyright: © 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): galaxies: active - galaxies: clusters: general - X-rays: galaxies: clusters

VizieR on-line data: <Available at CDS (J/MNRAS/498/4095): allspecz.dat>

Status at CDS : Examining the need for a new acronym. // All or part of tables of objects will be ingested in SIMBAD with priority 1.

Simbad objects: 8

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