AN ARCHIVAL Chandra AND XMM-Newton SURVEY OF TYPE 2 QUASARS

作者:Jia Jianjun*; Ptak Andrew; Heckman Timothy; Zakamska Nadia L
来源:Astrophysical Journal, 2013, 777(1): 27.
DOI:10.1088/0004-637X/777/1/27

摘要

In order to investigate obscuration in high-luminosity type 2 active galactic nuclei (AGNs), we analyzed Chandra and XMM-Newton archival observations for 71 type 2 quasars detected at 0.05 < z < 0.73, which were selected based on their [O III] lambda 5007 emission lines. For 54 objects with good spectral fits, the observed hard X-ray luminosity ranges from 2 x 10(41) to 5.3 x 10(44) erg s(-1), with a median of 1.1 x 10(43) erg s(-1). We find that the means of the column density and photon index of our sample are log N-H = 22.9 cm(-2) and Gamma = 1.87, respectively. From simulations using a more physically realistic model, we find that the absorbing column density estimates based on simple power-law models significantly underestimate the actual absorption in approximately half of the sources. Eleven sources show a prominent Fe K alpha emission line (EW>100 eV in the rest frame) and we detect this line in the other sources through a joint fit (spectral stacking). The correlation between the Fe K alpha and [O III] fluxes and the inverse correlation of the equivalent width of the Fe K alpha line with the ratio of hard X-ray and [O III] fluxes is consistent with previous results for lower luminosity Seyfert 2 galaxies. We conclude that obscuration is the cause of the weak hard X-ray emission rather than intrinsically low X-ray luminosities. We find that about half of the population of optically selected type 2 quasars are likely to be Compton thick. We also find no evidence that the amount of X-ray obscuration depends on the AGN luminosity (over a range of more than three orders of magnitude in luminosity).

  • 出版日期2013-11-1