Revealing the heavily obscured AGN population of High Redshift 3CRR Sources with Chandra X-ray Observations
Belinda J. Wilkes, Joanna Kuraszkiewicz, Martin Haas, Peter Barthel,, Christian Leipski, S.P.Willner, D.M.Worrall, Mark Birkinshaw, Robert, Antonucci, M.L.N. Ashby, Rolf Chini, G.G.Fazio, Charles Lawrence, Patrick, Ogle, Bernhard Schulz

TL;DR
This study uses Chandra X-ray observations of high-redshift 3CRR radio sources to investigate the obscured active galactic nucleus (AGN) population, revealing a higher obscuration fraction and complex absorption properties consistent with unification models.
Contribution
It provides the first detailed X-ray analysis of a complete, flux-limited sample of high-redshift radio sources, highlighting the prevalence of heavily obscured AGN and their properties.
Findings
Obscured fraction of AGN is 50%, higher than in other surveys.
Many narrow line radio galaxies show signs of Compton-thick obscuration.
Intrinsic X-ray luminosities are much higher than hardness ratios suggest.
Abstract
Chandra observations of a complete, flux-limited sample of 38 high-redshift (1<z<2), low-frequency selected (and so unbiased in orientation) 3CRR radio sources are reported. The sample includes 21 quasars (= broad line radio galaxies) and 17 narrow line radio galaxies (NLRGs) with matched 178 MHz radio luminosity (log L_R ~ 44-45). The quasars have high radio core-fraction, high X-ray luminosities (log L_X ~ 45-46) and soft X-ray hardness ratios (HR ~ -0.5) indicating low obscuration. The NLRGs have lower core-fraction, lower apparent X-ray luminosities (log L_X ~ 43-45) and mostly hard X-ray hardness ratios (HR>0) indicating obscuration (log N_H ~ 22-24 cm^-2). These properties and the correlation between obscuration and radio core-fraction are consistent with orientation-dependent obscuration as in Unification models. About half the NLRGs have soft X-ray hardness ratios and/or high…
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