English

Silicate Dust in Active Galactic Nuclei

Astrophysics of Galaxies 2017-01-18 v1

Abstract

The unification theory of active galactic nuclei (AGNs) hypothesizes that all AGNs are surrounded by an anisotropic dust torus and are essentially the same objects but viewed from different angles. However, little is known about the dust which plays a central role in the unification theory. There are suggestions that the AGN dust extinction law appreciably differs from that of the Galaxy. Also, the silicate emission features observed in type 1 AGNs appear anomalous (i.e., their peak wavelengths and widths differ considerably from that of the Galaxy). In this work, we explore the dust properties of 147 AGNs of various types at redshifts z<0.5, with special attention paid to 93 AGNs which exhibit the 9.7 and 18 μ\mum silicate emission features. We model their silicate emission spectra obtained with the Infrared Spectrograph aboard the Spitzer Space Telescope. We find that 60/93 of the observed spectra can be well explained with "astronomical silicate", while the remaining sources favor amorphous olivine or pyroxene. Most notably, all sources require the dust to be μ\mum-sized (with a typical size of ~1.5±\pm0.1 μ\mum), much larger than sub-μ\mum-sized Galactic interstellar grains, implying a flat or "gray" extinction law for AGNs. We also find that, while the 9.7 μ\mum emission feature arises predominantly from warm silicate dust of temperature T~270 K, the ~5--8 μ\mum continuum emission is mostly from carbon dust of T~640 K. Finally, the correlations between the dust properties (e.g., mass, temperature) and the AGN properties (e.g., luminosity, black hole mass) have also been investigated.

Keywords

Cite

@article{arxiv.1612.04293,
  title  = {Silicate Dust in Active Galactic Nuclei},
  author = {Yanxia Xie and Aigen Li and Lei Hao},
  journal= {arXiv preprint arXiv:1612.04293},
  year   = {2017}
}

Comments

68 pages, 24 figures, 6 tables; accepted for publication in The Astrophysical Journal Supplement Series

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