A hard look at local, optically-selected, obscured Seyfert galaxies
Abstract
We study the X-ray spectra of a sample of 19 obscured, optically-selected Seyfert galaxies (Sy 1.8, 1.9 and 2) in the local universe (~Mpc), drawn from the CfA Seyfert sample. Our analysis is driven by the high sensitivity of NuSTAR in the hard X-rays, coupled with soft X-ray spectra using XMM-Newton, Chandra, Suzaku, and Swift/XRT. We also analyze the optical spectra of these sources in order to obtain accurate mass estimates and Eddington fractions. We employ four different models to analyze the X-ray spectra of these sources, which all result in consistent results. We find that 79-90 % of the sources are heavily obscured with line-of-sight column density . We also find a Compton-thick () fraction of %. These results are consistent with previous estimates based on multi-wavelength analyses. We find that the fraction of reprocessed to intrinsic emission is positively correlated with and negatively correlated with the intrinsic, unabsorbed, X-ray luminosity (in agreement with the Iwasawa-Taniguchi effect). Our results support the hypothesis that radiation pressure regulates the distribution of the circumnuclear material.
Cite
@article{arxiv.2007.02616,
title = {A hard look at local, optically-selected, obscured Seyfert galaxies},
author = {E. S. Kammoun and J. M. Miller and M. Koss and K. Oh and A. Zoghbi and R. F. Mushotzky and D. Barret and E. Behar and W. N. Brandt and L. W. Brenneman and J. S. Kaastra and A. M. Lohfink and D. Proga and D. Stern},
journal= {arXiv preprint arXiv:2007.02616},
year = {2020}
}
Comments
Accepted for publication in ApJ