NuSTAR Reveals Extreme Absorption in z < 0.5 Type 2 Quasars
G. B. Lansbury (Durham), P. Gandhi, D. M. Alexander, R. J. Assef, J., Aird, A. Annuar, D. R. Ballantyne, M. Balokovic, F. E. Bauer, S. E. Boggs, W., N. Brandt, M. Brightman, F. E. Christensen, F. Civano, A. Comastri, W. W., Craig, A. Del Moro, B. W. Grefenstette, C. J. Hailey

TL;DR
This study uses NuSTAR and archival data to reveal extreme absorption in a sample of z<0.5 type 2 quasars, significantly refining their intrinsic X-ray luminosities and column densities, and estimating the fraction of Compton-thick quasars.
Contribution
It provides the first broad-band X-ray spectral analysis of nine candidate Compton-thick quasars, revealing higher absorption and luminosities than previous estimates, and refines the Compton-thick fraction among optically selected quasars.
Findings
NuSTAR detects five of nine candidate quasars in the 8-24 keV band.
Column densities are found to be 2.5-1600 times higher than previous estimates.
The estimated Compton-thick fraction among these quasars is approximately 36%, with potential to be as high as 76%.
Abstract
The intrinsic column density (NH) distribution of quasars is poorly known. At the high obscuration end of the quasar population and for redshifts z<1, the X-ray spectra can only be reliably characterized using broad-band measurements which extend to energies above 10 keV. Using the hard X-ray observatory NuSTAR, along with archival Chandra and XMM-Newton data, we study the broad-band X-ray spectra of nine optically selected (from the SDSS), candidate Compton-thick (NH > 1.5e24 cm^-2) type 2 quasars (CTQSO2s); five new NuSTAR observations are reported herein, and four have been previously published. The candidate CTQSO2s lie at z<0.5, have observed [OIII] luminosities in the range 8.4 < log (L_[OIII]/L_solar) < 9.6, and show evidence for extreme, Compton-thick absorption when indirect absorption diagnostics are considered. Amongst the nine candidate CTQSO2s, five are detected by NuSTAR…
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