BASS. XLIX. Characterization of highly luminous and obscured AGNs: local X-ray and [NeV]3426 emission in comparison with the high-redshift Universe
arXiv:2507.10674 · doi:10.3847/1538-4357/adec9a
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 material. For the 13/21 sources with multi-epoch X-ray spectra, exhibit variability in either 2-10 keV flux () or line-of-sight (). For the 20/21 sources with available near-UV/optical spectroscopy, we detect [NeV]3426 in 17 (), confirming its reliability to probe AGN emission even in heavily obscured systems. When normalized to the same [OIII]5007 peak flux as - narrow-line AGNs identified with JWST, our sample exhibits significantly stronger [NeV]3426 emission, suggesting that high-redshift obscured AGNs may be intrinsically weaker in [NeV]3426 or that [NeV]3426 is more challenging to detect in those environments. The sources presented here serve as a benchmark for high-redshift analogs, showing the potential of [NeV]3426 to reveal obscured AGNs and the need for future missions to expand X-ray studies into the high-redshift Universe.
Accepted for publication in ApJ