Formation of Turbulent Cones in Accretion Disk Outflows and Application to Broad Line Regions of Active Galactic Nuclei

dc.creatorPoludnenko, A. Y.
dc.creatorBlackman, E. G.
dc.creatorFrank, A.
dc.date2002-01-24
dc.date.accessioned2026-07-07T02:02:21Z
dc.date.available2026-07-07T02:02:21Z
dc.descriptionWe consider the stability of an accretion disk wind to cloud formation when subject to a central radiation force. For a vertical launch velocity profile that is Keplerian or flatter and the presence of a significant radiation pressure, the wind flow streamlines cross in a conical layer. We argue that such regions are highly unstable, and are natural sites for supersonic turbulence and, consequently, density compressions. We suggest that combined with thermal instability these will all conspire to produce clouds. Such clouds can exist in dynamical equilibrium, constantly dissipating and reforming. As long as there is an inner truncation radius to the wind, our model emerges with a biconical structure similar to that inferred by Elvis (2000) for the broad line region (BLR) of active galactic nuclei (AGN). Our results may also apply to other disk-wind systems.
dc.descriptionSubmitted to the Astrophysical Journal Letters
dc.identifierhttps://arxiv.org/abs/astro-ph/0201398
dc.identifierhttp://arxiv.org/abs/astro-ph/0201398
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/4054
dc.subjectAstrophysics
dc.titleFormation of Turbulent Cones in Accretion Disk Outflows and Application to Broad Line Regions of Active Galactic Nuclei
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