Does the mid-infrared-hard X-ray luminosity relation for active galactic nuclei depend on Eddington ratio?
Abstract
We revisit the correlation between the mid-infrared (6 m) and hard X-ray (2--10 keV) luminosities of active galactic nuclei (AGNs) to understand the physics behind it. We construct an X-ray flux-limited sample of 571 type 1 AGNs with erg cm s, drawn from the ROSAT Bright Survey catalog. Cross-matching the sample with infrared data taken from Wide-field Infrared Survey Explorer, we investigate the relation between the rest-frame 6 m luminosity () and the rest-frame 2--10 keV luminosity (), where is corrected for the contamination of host galaxies by using the spectral energy distribution fitting technique. We confirm that and are correlated over four orders of magnitude, in the range of erg s. We investigate what kinds of physical parameters regulate this correlation. We find that / clearly depends on the Eddington ratio () as , even taking into account quasars that are undetected by ROSAT as well as those detected by XMM-Newton in the literature. We also add hyper-luminous quasars with 10 erg s in the literature and perform a correlation analysis. The resultant correlation coefficient is , indicating a moderately tight correlation between / and . This means that AGNs with high Eddington ratios tend to have lower X-ray luminosities with respect to the mid-infrared luminosities. This dependence can be interpreted as a change in the structure of the accretion flow.
Keywords
Cite
@article{arxiv.1812.09485,
title = {Does the mid-infrared-hard X-ray luminosity relation for active galactic nuclei depend on Eddington ratio?},
author = {Yoshiki Toba and Yoshihiro Ueda and Kenta Matsuoka and Megumi Shidatsu and Tohru Nagao and Yuichi Terashima and Wei-Hao Wang and Yu-Yen Chang},
journal= {arXiv preprint arXiv:1812.09485},
year = {2019}
}
Comments
9 pages, 4 figures, and 2 tables, accepted for publication in MNRAS