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Dust Formation in AGN WindsInfrared observations of active galactic nuclei (AGNs) reveal emission from the putative dusty circumnuclear "torus" invoked by AGN unification, which is heated up by radiation from the central accreting black hole (BH).The strong 9.7 and 18 m silicate features observed in the AGN spectra, in both emission and absorption, further indicate the presence of such dusty environments. We present detailed calculations of the chemistry of silicate dust formation in AGN accretion disk winds. The winds considered herein are magnetohydrodynamic winds driven off the entire accretion disk domain that extends from the BH vicinity to the radius of BH influence, of order ~1-100 pc depending on the mass of the resident BH. Our results indicate that these winds provide conditions conducive to the formation of significant amounts of dust, especially for objects accreting close to their Eddington limit, making AGNs a significant source of dust in the universe, especially for luminous quasars. Our models justify the importance of an r1 density law in the winds for efficient formation and survival of dust grains. The dust production rate scales linearly with the mass of the central BH and varies as a power law of index between 2 and 2.5 with the dimensionless mass accretion rate. The resultant distribution of the dense dusty gas resembles atoroidal shape, with high column density and optical depths along the equatorial viewing angles, in agreement with the AGN unification picture
Document ID
20200001033
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Arkaprabha Sarangi
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Dwek, Eliahu
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Kazanas, Demosthenes
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
February 20, 2020
Publication Date
November 7, 2019
Publication Information
Publication: The Astrophysical Journal
Publisher: The Astrophysical Journal
Volume: 885
Issue: 2
ISSN: 0004-637X
e-ISSN: 1538-4357
Subject Category
Astrophysics
Report/Patent Number
GSFC-E-DAA-TN76991
Report Number: GSFC-E-DAA-TN76991
E-ISSN: 1538-4357
ISSN: 0004-637X
Distribution Limits
Public
Copyright
Other
Technical Review
NASA Peer Committee

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