BASS. XLIX. Characterization of highly luminous and obscured AGNs: local X-ray and [NeV]$\lambda$3426 emission in comparison with the high-redshift Universe
Alessandro Peca, Michael J. Koss, Kyuseok Oh, Claudio Ricci, Benny Trakhtenbrot, Richard Mushotzky, Ezequiel Treister, C. Megan Urry, Andrealuna Pizzetti, Kohei Ichikawa, Alessia Tortosa, Federica Ricci, Matilde Signorini, Darshan Kakkad, Chin-Shin Chang, Giovanni Mazzolari

TL;DR
This study characterizes highly luminous, obscured AGNs using X-ray and [NeV] emission, revealing variability, feedback phases, and comparing local and high-redshift AGN properties to inform future high-redshift surveys.
Contribution
It provides detailed local AGN properties, assesses [NeV] as an obscured AGN tracer, and compares local and high-redshift AGNs to guide future observations.
Findings
50% of sources are in the N_H-λ_Edd 'forbidden region' with outflow signatures
82% show X-ray flux or N_H variability across epochs
85% exhibit [NeV]λ3426 emission, confirming its reliability as an AGN indicator
Abstract
We present a detailed analysis of the most luminous and obscured Active Galactic Nuclei (AGNs) detected in the ultra-hard X-ray band (14-195 keV) by Swift/BAT. Our sample comprises 21 X-ray luminous (log , 2-10 keV) AGNs at , optically classified as Seyfert 1.9-2. Using NuSTAR, XMM-Newton, Suzaku, and Chandra, we constrain AGN properties such as absorption column density , photon index , intrinsic , covering factor, and iron K equivalent width. For sources with black hole mass estimates (12/20), we find a weak correlation between and Eddington ratio (). Of these, six () lie in the - "forbidden region'' and exhibit a combined higher prevalence of variability and outflow signatures, suggesting a transitional phase where AGN feedback may be clearing the obscuring…
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