X-ray and Multiwavelength Insights into the Inner Structure of High-Luminosity Disc-Like Emitters
B. Luo, W. N. Brandt, M. Eracleous, Jian Wu, P. B. Hall, A. Rafiee, D., P. Schneider, Jianfeng Wu

TL;DR
This study investigates high-luminosity AGNs with disc-like emission lines using X-ray and multiwavelength data, revealing their spectral properties, obscuration levels, and the necessity of warped discs for illumination, expanding understanding of their inner structures.
Contribution
It provides the first detailed X-ray and multiwavelength analysis of high-luminosity disc-like emitters, highlighting their spectral characteristics and the role of warped discs in their inner structure.
Findings
Most sources have typical AGN X-ray spectra with photon indices 1.4-2.0.
One source is a heavily obscured BAL quasar with N_H>3x10^{23} cm^{-2}.
IR-to-UV SEDs resemble those of standard quasars, indicating high-efficiency accretion.
Abstract
We present X-ray and multiwavelength studies of a sample of eight high-luminosity active galactic nuclei (AGNs) with disc-like H\beta emission-line profiles selected from the Sloan Digital Sky Survey Data Release 7. These sources have higher redshift (z~0.6) than the majority of the known disc-like emitters, and they occupy a largely unexplored space in the luminosity-redshift plane. Seven sources have typical AGN X-ray spectra with power-law photon indices of \Gamma~1.4-2.0; two of them show some X-ray absorption (column density N_H~10^{21}-10^{22} cm^{-2}$ for neutral gas). The other source, J0850+4451, has only three hard X-ray photons detected and is probably heavily obscured (N_H>3x10^{23} cm^{-2}). This object is also identified as a low-ionization broad absorption line (BAL) quasar based on Mg II \lambda2799 absorption; it is the first disc-like emitter reported that is also a…
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