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Runaway acceleration of line-driven winds : the role of the outer boundary

  • Observations and theory suggest that line driven winds from hot stars and luminous accretion disks adopt a unique, critical solution which corresponds to maximum mass loss rate. We analyze the numerical stability of the infinite family of shallow wind solutions, which resemble solar wind breezes, and their transition to the critical wind. Shallow solutions are sub-critical with respect to radiative (or Abbott) waves. These waves can propagate upstream through shallow winds at high speeds. If the waves are not accounted for in the Courant time step, numerical runaway results. The outer boundary condition is equally important for wind stability. Assuming pure outflow conditions, as is done in the literature, triggers runaway of shallow winds to the critical solution or to accretion flow.

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Author details:Achim FeldmeierORCiDGND, Isak Shlosman, Wolf-Rainer HamannORCiDGND
Publication type:Article
Language:English
Year of first publication:2002
Publication year:2002
Release date:2017/03/24
Source:Astrophysical Journal. - 566 (2002), 1, S. 392 - 398
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
Institution name at the time of the publication:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik
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