4.7 Article

The Variable and Non-variable X-Ray Absorbers in Compton-thin Type II Active Galactic Nuclei

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ASTROPHYSICAL JOURNAL
卷 897, 期 1, 页码 -

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IOP PUBLISHING LTD
DOI: 10.3847/1538-4357/ab92ab

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资金

  1. NASA via NASA-ADAP Award [NNX15AE64G]
  2. Narodowy Centrum Nauki (NCN) [2016/23/B/ST9/03123]
  3. DLR grants [50OR1802, 50OR1904]
  4. NASA/GSFC
  5. NASA/IPAC Extragalactic Database

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We have conducted an extensive X-ray spectral variability study of a sample of 20 Compton-thin type II galaxies using broadband spectra from XMM-Newton, Chandra, and Suzaku. The aim is to study the variability of the neutral intrinsic X-ray obscuration along the line of sight and investigate the properties and location of the dominant component of the X-ray-obscuring gas. The observations are sensitive to absorption columns of N-H similar to 10(20.5-24) cm(-2) of fully and partially covering neutral and/or lowly ionized gas on timescales spanning days to well over a decade. We detected variability in the column density of the full-covering absorber in 7/20 sources, on timescales of months to years, indicating a component of compact-scale X-ray-obscuring gas lying along the line of sight of each of these objects. Our results imply that torus models incorporating clouds or over-dense regions should account for line-of-sight column densities as low as similar to a few x 10(21) cm(-2). However, 13/20 sources yielded no detection of significant variability in the full-covering obscurer, with upper limits of Delta N-H spanning 10(21-23) cm(-2). The dominant absorbing media in these systems could be distant, such as kiloparsec-scale dusty structures associated with the host galaxy, or a homogeneous medium along the line of sight. Thus, we find that overall, strong variability in full-covering obscurers is not highly prevalent in Compton-thin type IIs, at least for our sample, in contrast to previous results in the literature. Finally, 11/20 sources required a partial-covering, obscuring component in all or some of their observations, consistent with clumpy near-Compton-thick compact-scale gas.

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