Instabilities in the Envelopes and Winds of Very Massive Stars
arXiv:1403.6745 · doi:10.1007/978-3-319-09596-7_5
Abstract
The high luminosity of Very Massive Stars (VMS) means that radiative forces play an important, dynamical role both in the structure and stability of their stellar envelope, and in driving strong stellar-wind mass loss. Focusing on the interplay of radiative flux and opacity, with emphasis on key distinctions between continuum vs. line opacity, this chapter reviews instabilities in the envelopes and winds of VMS. Specifically, we discuss how: 1) the iron opacity bump can induce an extensive inflation of the stellar envelope; 2) the density dependence of mean opacity leads to strange mode instabilities in the outer envelope; 3) desaturation of line-opacity by acceleration of near-surface layers initiates and sustains a line-driven stellar wind outflow; 4) an associated line-deshadowing instability leads to extensive small-scale structure in the outer regions of such line-driven winds; 5) a star with super-Eddington luminosity can develop extensive atmospheric structure from photon bubble instabilities, or from stagnation of flow that exceeds the "photon tiring" limit; 6) the associated porosity leads to a reduction in opacity that can regulate the extreme mass loss of such continuum-driven winds. Two overall themes are the potential links of such instabilities to Luminous Blue Variable (LBV) stars, and the potential role of radiation forces in establishing the upper mass limit of VMS.
44 pages, 13 figures. Chapter to appear in the book "Very Massive Stars in the Local Universe", Springer, J.S. Vink, ed
References in corpus (5)
- The R136 star cluster hosts several stars whose individual masses greatly exceed the accepted 150 Msun stellar mass limit
- Neglecting the porosity of hot-star winds can lead to underestimating mass-loss rates
- The Effect of Porosity on X-ray Emission Line Profiles from Hot-Star Winds
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Cited by in corpus (15)
- Numerical simulations of super-luminous supernovae of type IIn
- Theory and Diagnostics of Hot Star Mass Loss
- Metallicity-dependent wind parameter predictions for OB stars
- The metallicity dependence of envelope inflation in massive stars
- Stripped-envelope stars in different metallicity environments. II. Type I supernovae and compact remnants
- Superadiabaticity and the metallicity independence of the Humphreys-Davidson limit
- Metallicity dependence of turbulent pressure and macroturbulence in stellar envelopes
- A systematic study of super-Eddington layers in the envelopes of massive stars
- Method and new tabulations for flux-weighted line-opacity and radiation line-force in supersonic media
- Three Dimensional Natures of Massive Star Envelopes
- A massive nebula around the Luminous Blue Variable star RMC143 revealed by ALMA
- Non-thermal -rays from pulsation-driven shocks in Cepheids
- Accretion in the Binary System GG Carinae and Implications for B[e] Supergiants
- Structure formation in O-type stars and Wolf-Rayet stars
- Accretion in massive colliding wind binaries and the effect of wind momentum ratio