The X-ray spectral and variability properties of typical radio-loud quasars
Abstract
We present X-ray spectral and long-term variability analyses of an unbiased sample of 361 optically selected radio-loud quasars (RLQs) utilizing sensitive serendipitous X-ray data from the Chandra and XMM-Newton archives. The spectral and temporal properties of RLQs are compared with those of radio-quiet quasars (RQQs) matched in L2500A and z. The median power-law photon index () of RLQs is 1.84+0.01-0.01, which is close to that of matched RQQs (1.90+0.02-0.01). No significant correlations between and radio-loudness, Lx/Lx,rqq (the X-ray luminosity over that expected from the Lx-Luv relation for RQQs), redshift, or Eddington ratio are found for our RLQs. The stacked X-ray spectra of our RLQs show strong iron-line emission and a possible Compton-reflection hump. The intrinsic X-ray variability amplitude is ≈40% for RLQs on timescales of months-to-years in the rest frame, which is somewhat smaller than for the matched RQQs (≈60%) on similar timescales, perhaps due to the larger black-hole masses and lower Eddington ratios in our RLQ sample. The X-ray spectral and variability results for our RLQs generally support the idea that the X-ray emission of typical RLQs is dominated by the disk/corona, as is also indicated by a recent luminosity correlation study.
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