The properties of ten O-type stars in the low-metallicity galaxies IC 1613, WLM and NGC 3109
arXiv:1410.0934 · doi:10.1051/0004-6361/201424312
Abstract
Massive stars likely played an important role in the reionization of the Universe, and the formation of the first black holes. Massive stars in low-metallicity environments in the local Universe are reminiscent of their high redshift counterparts. In a previous paper, we reported on indications that the stellar winds of low-metallicity O stars may be stronger than predicted, which would challenge the current paradigm of massive star evolution. In this paper, we aim to extend our initial sample of six O stars in low-metallicity environments by four. We aim to derive their stellar and wind parameters, and compare these to radiation-driven wind theory and stellar evolution models. We have obtained intermediate-resolution VLT/X-Shooter spectra of our sample of stars. We derive the stellar parameters by fitting synthetic fastwind line profiles to the VLT/X-Shooter spectra using a genetic fitting algoritm. We compare our parameters to evolutionary tracks and obtain evolutionary masses and ages. We also investigate the effective temperature versus spectral type calibration for SMC and lower metallicities. Finally, we reassess the wind momentum versus luminosity diagram. The derived parameters of our target stars indicate stellar masses that reach values of up to 50 . The wind strengths of our stars are, on average, stronger than predicted from radiation-driven wind theory and reminiscent of stars with an LMC metallicity. We discuss indications that the iron content of the host galaxies is higher than originally thought and is instead SMC-like. We find that the discrepancy with theory is lessened, but remains significant for this higher metallicity. This may imply that our current understanding of the wind properties of massive stars, both in the local universe as well as at cosmic distances, remains incomplete.
Accepted for publication in Astronomy and Astrophysics. 10 pages, 8 figures
References in corpus (12)
- The Supernova -- Gamma-Ray Burst Connection
- Mass loss from hot massive stars
- The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars
- The VLT-FLAMES survey of massive stars: Mass loss and rotation of early-type stars in the SMC
- VLT spectroscopy of blue supergiants in IC 1613
- The Araucaria Project: the Local Group Galaxy WLM--Distance and metallicity from quantitative spectroscopy of blue Supergiants
- The Araucaria Project. VLT spectra of blue supergiants in WLM: classification and first abundances
- The Physical Properties and Effective Temperature Scale of O-type Stars as a Function of Metallicity. III. More Results from the Magellanic Clouds
- The ACS LCID project. X. The Star Formation History of IC 1613: Revisiting the Over-Cooling Problem
- Winds of low-metallicity OB-type stars: HST-COS spectroscopy in IC1613
- The Araucaria Project: Distance to the Local Group Galaxy NGC 3109 from Near-Infrared Photometry of Cepheids
- The Araucaria Project: VLT-spectroscopy of blue massive stars in NGC 55
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- Far-Ultraviolet Spectra of Main-Sequence O Stars at Extremely Low Metallicity
- X-Shooting ULLYSES: Massive stars at low metallicity. IV. Spectral analysis methods and exemplary results for O stars
- A Panchromatic Study of Massive Stars in the Extremely Metal-Poor Local Group Dwarf Galaxy Leo A
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- Luminous AGB variables in the dwarf Irregular Galaxy, NGC 3109
- Unveiling the nitrogen-rich massive star in the metal-poor galaxy NGC 4068
- Applications of Stellar Population Synthesis in the Distant Universe
- X-Shooting ULLYSES: massive stars at low metallicity: XII. The clumped winds of O-type (super)giants in the Large Magellanic Cloud
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