Published 1982 | Version v1
Book

Corrections for hydrostatic atmospheric models: radii and effective temperatures of Wolf Rayet stars

  • 1. Brussels Univ. (Belgium). Inst. d'Astronomie et d'Astrophysique
  • 2. Rijksuniversiteit Utrecht (Netherlands). Lab. voor Ruimte-Onderzoek

Description

With the assumption of plane-parallel hydrostatic atmospheres, used generally for the computation of evolutionary models, the radii of WR stars are seriously underestimated. The true atmospheres may be very extended, due to the effect of the stellar wind. Instead of these hydrostatic atmospheres the authors consider dynamical atmospheres adopting a velocity law. The equation of the optical depth is integrated outwards using the equation of continuity. The ''hydrostatic'' radii are to be multiplied with a factor 2 to 8, and the effective temperatures with a factor 0.8 to 0.35 when Wolf Rayet characteristics for the wind are considered, and WR mass loss rates are used. With these corrections the effective temperatures of the theoretical models, which are helium burning Roche lobe overflow remnants, range between 30,000 K and 50,000 K. Effective temperatures calculated in the hydrostatic hypothesis can be as high as 150,000 K for helium burning RLOF-remnants with WR mass loss rates. (Auth.)

Additional details

Publishing Information

Publisher
D. Reidel.
Imprint Place
Dordrecht (Netherlands)
ISBN
90-277-1469-X
Imprint Title
Wolf-Rayet stars
Imprint Pagination
636 p.
Journal Issue
no. 99
Series
International astronomical union symposium.
Journal Page Range
p. 53-56.

Conference

Title
99. IAU Symposium on Wolf-Rayet stars.
Dates
18 - 22 Sep 1981.
Place
Cozumel (Mexico).

INIS

Country of Publication
Netherlands
Country of Input or Organization
Netherlands
INIS RN
14735421
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CORRECTIONS; HYDROSTATICS; MASS TRANSFER; STAR MODELS; STELLAR ATMOSPHERES; ULTRAHIGH TEMPERATURE; WOLF-RAYET STARS
Descriptors DEC
ATMOSPHERES; MAIN SEQUENCE STARS; MATHEMATICAL MODELS; STARS

Optional Information

Notes
Imprint:Includes subject index.