Hostname: page-component-76fb5796d-9pm4c Total loading time: 0 Render date: 2024-04-26T12:37:25.137Z Has data issue: false hasContentIssue false

Instabilities in massive stars

Published online by Cambridge University Press:  26 May 2016

Stanley P. Owocki*
Affiliation:
Bartol Research Institute, University of Delaware, Newark, DE 19716, USA

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

A defining property of massive stars is the dominant, dynamical role played by radiation throughout the stellar interior, atmosphere, and wind. Associated with this radiation hydrodynamics are several distinct kinds of instabilities that can lead to convection in both core and envelope, clumping in atmosphere and wind outflow, and perhaps even the dramatic mass loss outbursts associated with Luminous Blue Variable phases. Here I review these instabilities with emphasis on basic physical properties of radiative driving. I draw on two specific examples of dynamical instability, namely the strong instability associated with line-driving of a stellar wind outflow, and the global stellar instabilities associated with approaching or exceeding a modified Eddington limit. I conclude with a brief mention of recent ideas on the role of stellar rotation in the shaping of bipolar LBV outbursts.

Type
Part 2. Interiors of Massive Stars
Copyright
Copyright © Astronomical Society of the Pacific 2003 

References

Abbott, D.C. 1980, ApJ 242, 1183.CrossRefGoogle Scholar
Babel, J., Montmerle, Th. 1997, A&A 323, 121.Google Scholar
Castor, J.I., Abbott, D.C., Klein, R.I. 1975, ApJ 195, 157 (CAK).Google Scholar
Carlberg, R.G. 1980, ApJ 241, 1131.Google Scholar
Cranmer, S.R. 1996, , .Google Scholar
Cranmer, S.R., Owocki, S.P. 1996, ApJ 462, 469.Google Scholar
Dessart, L., Owocki, S.P. 2002, A&A 383, 1113.Google Scholar
Dwarkadas, V.V., Owocki, S. 2002, ApJ 581, 1337.CrossRefGoogle Scholar
Feldmeier, A. 2001, , .Google Scholar
Feldmeier, A., Puls, J., Pauldrach, A. 1997, A&A 322, 878.Google Scholar
Frank, A., Ryu, D., Davidson, K. 1998, ApJ 500, 291.Google Scholar
Fullerton, A.W., Gies, D.R., Bolton, C.T. 1996, ApJS 103, 475.Google Scholar
Gayley, K.G. 1995, ApJ 454, 410.CrossRefGoogle Scholar
Glatzel, W. 1994, MNRAS 271, 66.Google Scholar
Glatzel, W. 1997, in: Nota, A. & Lamers, H. (eds.), Luminous Blue Variables: Massive Stars in Transition, ASP-CS 120, 128.Google Scholar
Glatzel, W., Mehren, S. 1996, MNRAS 282, 1470.CrossRefGoogle Scholar
Glatzel, W., Kiriakidis, M., Chernigovskij, S., Fricke, K.J. 1999, MNRAS 303, 116.CrossRefGoogle Scholar
Joss, P.C., Salpeter, E.E., Ostriker, J.P. 1973, ApJ 181, 429.CrossRefGoogle Scholar
Kiriakidis, M., Fricke, K.J., Glatzel, W. 1993, MNRAS 264, 50.CrossRefGoogle Scholar
Kiriakidis, M., Glatzel, W., Fricke, K.J. 1996, MNRAS 281, 406.CrossRefGoogle Scholar
Langer, N., García-Segura, G., Mac Low, M.-M. 1999, ApJ (Letters) 520, L49.Google Scholar
Lépine, S., Moffat, A.F.J., Henriksen, R. 1996, ApJ 466, 392.Google Scholar
Lépine, S., Moffat, A.F.J. 1999, ApJ 514, 909.Google Scholar
Lucy, L.B. 1984, ApJ 284, 351.CrossRefGoogle Scholar
Lucy, L.B., Solomon, P.M. 1970, ApJ 159, 879.Google Scholar
MacGregor, K.B., Hartmann, L., Raymond, J.C. 1979, ApJ 231, 514.Google Scholar
Maeder, A., Meynet, G. 2001, A&A (Letters) 372, L9.Google Scholar
Milne, E.A. 1926, MNRAS 86, 459.Google Scholar
Oskinova, L.M., Ignace, R., Brown, J.C., Cassinelli, J.P. 2001, A&A 372, 1009.Google Scholar
Oskinova, L.M., Feldmeier, A., Hamann, W.-R. 2003, these Proceedings.Google Scholar
Owocki, S.P. 1991, in: Crivellari, L., Hubeny, I., Hummer, D.G. (eds)., Stellar Atmospheres: Beyond Classical Models (Kluwer: Dordrecht), p. 235.Google Scholar
Owocki, S.P. 1999, in: Wolf, B., Stahl, O. & Fullerton, A.W. (eds)., Variable and Non-spherical Stellar Winds in Luminous Hot Stars (Berlin: Springer), Lecture Notes in Physics 523, 294.Google Scholar
Owocki, S.P., Castor, J.I., Rybicki, G.B. 1987, in: Lamers, H. & de Loore, C.W.H. (eds.), Instabilities in Luminous Early-Type Stars (Dordrecht: Kluwer), p. 269.Google Scholar
Owocki, S.P., Cranmer, S.R. 2002, in: Aerts, C., Bedding, T.R. & Christensen-Dalsgaard, J. (eds.), Radial and Non-radial Pulsations as Probes of Stellar Physics, ASP-CS 259, 512.Google Scholar
Owocki, S.P., Gayley, K.G. 1997, in: Nota, A. & Lamers, H. (eds.), Luminous Blue Variables: Massive Stars in Transition, ASP-CS 120, 121.Google Scholar
Owocki, S.P., Puls, J. 1996, ApJ 462, 894.CrossRefGoogle Scholar
Owocki, S.P., Puls, J. 1999, ApJ 510, 355.CrossRefGoogle Scholar
Owocki, S.P., Rybicki, G.B. 1984, ApJ 284, 337.Google Scholar
Owocki, S.P., Rybicki, G.B. 1985, ApJ 299, 265.Google Scholar
Pittard, J. 2000, , .Google Scholar
Runacres, M., Owocki, S.P. 2002, A&A 381, 1015.Google Scholar
Shaviv, N.J. 1998, ApJ (Letters) 494, L193.CrossRefGoogle Scholar
Shaviv, N.J. 2000, ApJ (Letters) 529, L137.Google Scholar
Shaviv, N.J. 2001, ApJ 549, 1093.Google Scholar
Smith, N., Davidson, K., Gull, T.R., Ishibashi, K. 2003, these Proceedings.Google Scholar
Spiegel, E.A. 1976, in: Cayrel, R. & Steinberg, M. (eds.), Physique des Mouvement dans les Atmospheres Stellaires (Paris: CNRS), p. 267.Google Scholar
Spiegel, E.A. 1977, in: Spiegel, E.A. & Zahn, J.-P. (eds.), Problems in Stellar Convection (Berlin: Springer), p. 19.Google Scholar
Spiegel, E.A., Tao, L. 1999, Phys. Rep. 311, 163.Google Scholar
ud-Doula, A., Owocki, S.P. 2002, ApJ 576, 413.Google Scholar