On the nature of WO stars: a quantitative analysis of the WO3 star DR1 in IC 1613
arXiv:1310.2849 · doi:10.1051/0004-6361/201322155
Abstract
Context. Oxygen sequence Wolf-Rayet (WO) stars are thought to represent the final evolutionary stage of the most massive stars. The characteristic strong O vi emission possibly originates from an enhanced oxygen abundance in the stellar wind. Alternatively, the O vi emission can be caused by the high temperature of these stars, in which case the WO stars are the high-temperature extension of the more common carbon sequence Wolf-Rayet (WC) stars. Aims. By constraining the physical properties and evolutionary status of DR1, a WO star in the low-metallicity Local Group dwarf galaxy IC 1613 and one of only two objects of its class known in a SMC-like metallicity environment, we aim to investigate the nature of WO stars and their evolutionary connection with WC stars. Methods. We use the non-LTE atmosphere code cmfgen to model the observed spectrum of DR1 and to derive its stellar and wind parameters. We compare our values with other studies of WC and WO stars, as well as with the predictions of evolutionary models. We also model the surrounding nebula using the photo-ionization code cloudy. Results. The oxygen and carbon abundances that we obtain are comparable to values found for WC stars. The temperature and luminosity are, however, higher than those of WC stars. DR1 is embedded in the hottest known H ii region in the Local Group. The nebular properties can be consistently reproduced by cloudy models adopting DR1 as central ionizing source. Conclusions. Comparison of the abundances and temperature of DR1 with core helium-burning models show that DR1 is currently well into the second half of helium burning. If the properties of DR1 are representative for the WO class, it would imply that WO stars are the high-temperature and high-luminosity extension of the WC stars, and do not necessarily represent a later evolutionary stage.
13 pages, 12 figures, accepted for publication in Astronomy & Astrophysics
References in corpus (14)
- Binary interaction dominates the evolution of massive stars
- The Supernova -- Gamma-Ray Burst Connection
- The rotation rates of massive stars: the role of binary interaction through tides, mass transfer and mergers
- The VLT-FLAMES Tarantula Survey VIII. Multiplicity properties of the O-type star population
- The death of massive stars - II. Observational constraints on the progenitors of type Ibc supernovae
- Mass loss from late-type WN stars and its Z-dependence: very massive stars approaching the Eddington limit
- The Galactic WC stars: Stellar parameters from spectral analyses indicate a new evolutionary sequence
- The different progenitors of type Ib, Ic SNe, and of GRB
- Pair creation supernovae at low and high redshift
- VLT spectroscopy of blue supergiants in IC 1613
- On the nature and detectability of Type Ib/c supernova progenitors
- On the Sensitivity of Massive Star Nucleosynthesis and Evolution to Solar Abundances and to Uncertainties in Helium Burning Reaction Rates
- The He II Post-Reionization Epoch: HST/COS Observations of the Quasar HS1700+6416
- The Discovery of a Rare WO-type Wolf-Rayet Star in the Large Magellanic Cloud
Cited by in corpus (17)
- The evolution of massive stars and their spectra I. A non-rotating 60 Msun star from the zero-age main sequence to the pre-supernova stage
- Wolf-Rayet stars in the Small Magellanic Cloud: II. Analysis of the binaries
- The MiMeS Survey of Magnetism in Massive Stars: CNO surface abundances of Galactic O stars
- Massive stars on the verge of exploding: the properties of oxygen sequence Wolf-Rayet stars
- Winds of low-metallicity OB-type stars: HST-COS spectroscopy in IC1613
- A massive white-dwarf merger product before final collapse
- Helium Stars: Towards an Understanding of Wolf-Rayet Evolution
- The properties of ten O-type stars in the low-metallicity galaxies IC 1613, WLM and NGC 3109
- A new prescription for the mass-loss rates of WC and WO stars
- Intensity interferometry of P Cygni in the H emission line: towards distance calibration of LBV supergiant stars
- Icy Exomoons Evidenced by Spallogenic Nuclides in Polluted White Dwarfs
- WO-Type Wolf-Rayet Stars: the Last Hurrah of Massive Star Evolution
- Low-metallicity massive single stars with rotation. II. Predicting spectra and spectral classes of chemically-homogeneously evolving stars
- Observational properties of massive black hole binary progenitors
- Surface chemical composition of single WNh stars
- The drastic impact of Eddington-limit induced mass ejections on massive star populations
- Low-metallicity massive single stars with rotation. III. Source of ionization and C-IV emission in I Zw 18