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MULTI-PHASE NATURE of A RADIATION-DRIVEN FOUNTAIN with NUCLEAR STARBURST in A LOW-MASS ACTIVE GALACTIC NUCLEUS

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posted on 2024-07-09, 22:12 authored by Keiichi Wada, Marc Schartmann, Rowin Meijerink
The structures and dynamics of molecular, atomic, and ionized gases are studied around a low-luminosity active galactic nucleus (AGN) with a small (2× {10}6{M}☉ ) black hole using three-dimensional (3D) radiation-hydrodynamic simulations. We studied, for the first time, the non-equilibrium chemistry for the X-ray-dominated region in the “radiation-driven fountain” with supernova feedback. A double hollow cone structure is naturally formed without postulating a thick “torus” around a central source. The cone is occupied with an inhomogeneous, diffuse ionized gas and surrounded by a geometrically thick (h/r≳ 1) atomic gas. Dense molecular gases are distributed near the equatorial plane, and energy feedback from supernovae enhances their scale height. Molecular hydrogen exists in a hot phase (〉1000 K) as well as in a cold (lt 100 {{K}}), dense (gt {10}3 {{cm}}-3) phase. The velocity dispersion of H2 in the vertical direction is comparable to the rotational velocity, which is consistent with near-infrared observations of nearby Seyfert galaxies. Using 3D radiation transfer calculations for the dust emission, we find polar emission in the mid-infrared band (12 μm), which is associated with bipolar outflows, as suggested in recent interferometric observations of nearby AGNs. If the viewing angle for the nucleus is larger than 75°, the spectral energy distribution is consistent with that of the Circinus galaxy. The multi-phase interstellar medium observed in optical/infrared and X-ray observations is also discussed.

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ISSN

2041-8213

Journal title

Astrophysical Journal Letters

Volume

828

Issue

2

Article number

article no. L19

Pagination

1 p

Publisher

Institute of Physics Publishing

Copyright statement

Copyright © 2016. The American Astronomical Society. All rights reserved. The published version is reproduced here in accordance with the copyright policy of the publisher and can be also be located at https://doi.org/10.3847/2041-8205/828/2/L19.

Language

eng

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