Properties of WNh stars in the Small Magellanic Cloud: evidence for homogeneous evolution
arXiv:0811.3564 · doi:10.1051/0004-6361:200811014
Abstract
We derive the physical properties of three WNh stars in the SMC to constrain stellar evolution beyond the main sequence at low metallicity and to investigate the metallicity dependence of the clumping properties of massive stars. We compute atmosphere models to derive the stellar and wind properties of the three WNh targets. A FUV/UV/optical/near-infrared analysis gives access to temperatures, luminosities, mass loss rates, terminal velocities and stellar abundances. All stars still have a large hydrogen mass fraction in their atmosphere, and show clear signs of CNO processing in their surface abundances. One of the targets can be accounted for by normal stellar evolution. It is a star with initial mass around 40-50 Msun in, or close to, the core He burning phase. The other two objects must follow a peculiar evolution, governed by fast rotation. In particular, one object is likely evolving homogeneously due to its position blue-ward of the main sequence and its high H mass fraction. The clumping factor of one star is found to be 0.15+/-0.05. This is comparable to values found for Galactic Wolf-Rayet stars, indicating that within the uncertainties, the clumping factor does not seem to depend on metallicity.
16 pages. A&A accepted
References in corpus (13)
- The Supernova -- Gamma-Ray Burst Connection
- UBVJHK synthetic photometry of Galactic O stars
- The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars
- Bright OB stars in the Galaxy - III. Constraints on the radial stratification of the clumping factor in hot star winds from a combined Halpha, IR and radio analysis
- Binary star progenitors of long gamma-ray bursts
- Mass loss from late-type WN stars and its Z-dependence: very massive stars approaching the Eddington limit
- The most massive stars in the Arches cluster
- Neglecting the porosity of hot-star winds can lead to underestimating mass-loss rates
- The VLT-FLAMES survey of massive stars: atmospheric parameters and rotational velocity distributions for B-type stars in the Magellanic Clouds
- The VLT-FLAMES survey of massive stars: Wind properties and evolution of hot massive stars in the LMC
- A Spectroscopic Survey of WNL Stars in the LMC: General Properties and Binary Status
- The very massive binary NGC3603-A1
- Effects of metallicity, star formation conditions and evolution of B & Be stars
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- Very Massive Stars and Pair-Instability Supernovae: Mass-loss Framework for low Metallicity
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- Spectroscopic evolution of massive stars near the main sequence at low metallicity
- Delayed Photons from Binary Evolution Help Reionize the Universe
- Impact of Population III homogeneous stellar evolution on early cosmic reionisation
- The mass distribution of stars stripped in binaries: The effect of metallicity
- Progenitors of Long-Duration Gamma-ray Bursts
- Surface chemical composition of single WNh stars
- Spectral Signatures of Population III and Envelope-stripped Stars in Galaxies at the Epoch of Reionization
- Effects of chemically homogeneous evolution of the first stars on the 21-cm signal and reionization
- Metal-poor single Wolf-Rayet stars: The interplay of optically thick winds and rotation
- Impact of accretion-induced chemically homogeneous evolution on stellar and compact binary populations
- A constant upper luminosity limit of cool supergiant stars down to the extremely low metallicity of I Zw 18
- Dynamically consistent analysis of Galactic WN4b stars
- 4D Grid-fitting of UV-optical spectra of massive stars. I. Numerical technique and its associated uncertainties
- SDSS-V LVM: Detectability of Wolf-Rayet stars and their He II ionizing flux in low-metallicity environments I. The weak-lined, early-type WN3 stars in the SMC
- Kinematics of Wolf-Rayet Stars in the LMC: Clues to Subtype Origins