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The warm wind model

Published online by Cambridge University Press:  14 August 2015

Henny J.G.L.M. Lamers*
Affiliation:
The Astronomical Institute at Utrecht Space Research Laboratory

Abstract

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The analysis of the UV spectra of τ Sco (BO V) and ζ Pup (O4 f) resulted in the empirical warm wind model. In this model the presence of O5+ and N4+ ions in the envelopes of early type stars is explained by collisional ionization in a ‘warm’ envelope of T ≃ 2 105 K.

Type
Session 4: Panel Discussion on Stellar Wind Theories
Copyright
Copyright © Reidel 1979 

References

Cannon, C.J., Thomas, R.N.: 1977, Astrophys. J. 210, p. 910.Google Scholar
Castor, J.I., Abbott, D.C., Klein, R.I.: 1976, in Physique des Mouvements dans les Atmosphères Stellaires , ed. Cayrel, R. and Steinberg, M., CNRS, Paris, p. 453.Google Scholar
Klein, R.I., Castor, J.I.: 1978, Astrophys. J. Google Scholar
Lamers, H.J.G.L.M., Morton, D.C.: 1976, Astrophys. J. Suppl. 32, p. 715.Google Scholar
Lamers, H.J.G.L.M., Rogerson, J.B.: 1978, Astron. Astrophys. 66, p. 417.Google Scholar
Lamers, H.J.G.L.M., Snow, T.P.: 1978, Astrophys. J. 219, p. 504.Google Scholar
Lamers, H.J.G.L.M., Stalio, R., Kondo, Y.: 1978, Astrophys. J. 223, p. 207.CrossRefGoogle Scholar
Mewe, R., Heise, J., Gronenschild, E.H.B.M., Brinkman, A.C., Schrijver, J., den Boggende, A.J.F.: 1975, Astrophys. J. (Letters), 202, L67.Google Scholar
Olson, G.: 1978, Astrophys. J. (in press).Google Scholar
Rogerson, J.B., Lamers, H.J.G.L.M.: 1975, Nature, 256, p. 19.Google Scholar
Smith, M.A., Karp, A.H.: 1978, Astrophys. J. 219, p. 522.CrossRefGoogle Scholar
Snow, T.P., Morton, D.C.: 1976, Astrophys. J. Suppl., 32, p. 429.Google Scholar