X-ray redshifts for obscured AGN: a case study in the J1030 deep field
Abstract
We present a procedure to constrain the redshifts of obscured ( cm) Active Galactic Nuclei (AGN) based on low-count statistics X-ray spectra, which can be adopted when photometric and/or spectroscopic redshifts are unavailable or difficult to obtain. We selected a sample of 54 obscured AGN candidates on the basis of their X-ray hardness ratio, , in the Chandra deep field (479 ks, 335 arcmin) around the QSO SDSS J1030+0524. The sample has a median value of net counts in the 0.5-7 keV energy band. We estimate reliable X-ray redshift solutions taking advantage of the main features in obscured AGN spectra, like the Fe 6.4 keV K emission line, the 7.1 keV Fe absorption edge and the photoelectric absorption cut-off. The significance of such features is investigated through spectral simulations, and the derived X-ray redshift solutions are then compared with photometric redshifts. Both photometric and X-ray redshifts are derived for 33 sources. When multiple solutions are derived by any method, we find that combining the redshift solutions of the two techniques improves the rms by a factor of two. Using our redshift estimates (), we derived absorbing column densities in the range cm and absorption-corrected, 2-10 keV rest-frame luminosities between and erg s, with median values of cm and erg s, respectively. Our results suggest that the adopted procedure can be applied to current and future X-ray surveys, for sources detected only in the X-rays or that have uncertain photometric or single-line spectroscopic redshifts.
Keywords
Cite
@article{arxiv.2011.05983,
title = {X-ray redshifts for obscured AGN: a case study in the J1030 deep field},
author = {Alessandro Peca and Cristian Vignali and Roberto Gilli and Marco Mignoli and Riccardo Nanni and Stefano Marchesi and Micol Bolzonella and Marcella Brusa and Nico Cappelluti and Andrea Comastri and Giorgio Lanzuisi and Fabio Vito},
journal= {arXiv preprint arXiv:2011.05983},
year = {2022}
}
Comments
22 pages, 18 figures