No breakdown of the radiatively-driven wind theory in low-metallicity environments
arXiv:1502.05641 · doi:10.1093/mnras/stv379
Abstract
We present a spectroscopic analysis of HST/COS observations of three massive stars in the low metallicity dwarf galaxies IC 1613 and WLM. These stars, were previously observed with VLT/X-shooter by Tramper et al. (2011, 2014) who claimed that their mass-loss rates are higher than expected from theoretical predictions for the underlying metallicity. A comparison of the FUV spectra with those of stars of similar spectral types/luminosity classes in the Galaxy, and the Magellanic Clouds provides a direct, model-independent check of the mass-loss - metallicity relation. Then, a quantitative spectroscopic analysis is carried out using the NLTE stellar atmosphere code CMFGEN. We derive the photospheric and wind characteristics, benefiting from a much better sensitivity of the FUV lines to wind properties than Ha. Iron and CNO abundances are measured, providing an independent check of the stellar metallicity. The spectroscopic analysis indicates that Z/Zsun = 1/5, similar to a SMC-type environment, and higher than usually quoted for IC 1613 and WLM. The mass-loss rates are smaller than the empirical ones by Tramper et al. (2014), and those predicted by the widely used theoretical recipe by Vink et al. (2001). On the other hand, we show that the empirical, FUV-based, mass-loss rates are in good agreement with those derived from mass fluxes computed by Lucy (2012). We do not concur with Tramper et al. (2011, 2014) that there is a breakdown in the mass-loss - metallicity relation.
26 pages, 3 tables, 15 figures. Accepted for publication in MNRAS
References in corpus (21)
- Mass loss from hot massive stars
- Southern Massive Stars at High Angular Resolution: Observational Campaign and Companion Detection
- The R136 star cluster hosts several stars whose individual masses greatly exceed the accepted 150 Msun stellar mass limit
- The High Angular Resolution Multiplicity of Massive Stars
- 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
- The VLT-FLAMES Survey of Massive Stars: Observations centered on the Magellanic Cloud clusters NGC 330, NGC 346, NGC 2004, and the N11 region
- Neglecting the porosity of hot-star winds can lead to underestimating mass-loss rates
- The VLT-FLAMES survey of massive stars: Mass loss and rotation of early-type stars in the SMC
- An XMM-Newton view of the young open cluster NGC 6231 -- II. The OB star population
- 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
- A consistent solution for the velocity field and mass-loss rate of massive stars
- Mass loss from inhomogeneous hot star winds III. An effective-opacity formalism for line radiative transfer in accelerating, clumped two-component media, and first results on theory and diagnostics
- Winds of low-metallicity OB-type stars: HST-COS spectroscopy in IC1613
- The properties of ten O-type stars in the low-metallicity galaxies IC 1613, WLM and NGC 3109
- On the Importance of the Interclump Medium for Superionization: O VI Formation in the Wind of Zeta Pup
- Investigating the origin of cyclical wind variability in hot, massive stars - I. On the dipolar magnetic field hypothesis
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- Testing massive star evolution, star-formation history and feedback at low metallicity : Spectroscopic analysis of OB stars in the SMC Wing
- Theory and Diagnostics of Hot Star Mass Loss
- Ultra-luminous X-ray sources and neutron-star-black-hole mergers from very massive close binaries at low metallicity
- Metallicity-dependent wind parameter predictions for OB stars
- X-Shooting ULLYSES: Massive stars at low metallicity. III. Terminal wind speeds of ULLYSES massive stars
- Massive stars in the Small Magellanic Cloud : Evolution, rotation and surface abundances
- Stars and gas in the most metal-poor galaxies I: COS and MUSE observations of SBS 0335-052E
- Direct Constraints on the Extremely Metal-Poor Massive Stars Underlying Nebular C IV Emission from Ultra-Deep HST/COS Ultraviolet Spectroscopy
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- Phase-resolved spectroscopic analysis of the eclipsing black hole X-ray binary M33 X-7: System properties, accretion, and evolution
- Wind properties of Milky Way and SMC massive stars: empirical Z dependence from CMFGEN models
- Spectroscopic evolution of massive stars near the main sequence at low metallicity
- Far-Ultraviolet Spectra of Main-Sequence O Stars at Extremely Low Metallicity
- A Panchromatic Study of Massive Stars in the Extremely Metal-Poor Local Group Dwarf Galaxy Leo A
- Massive stars in the Sagittarius Dwarf Irregular Galaxy
- Hot subdwarf wind models with accurate abundances I. Hydrogen dominated stars HD 49798 and BD+182647
- Critical Metallicity of Cool Supergiant Formation. I. Effects on Stellar Mass Loss and Feedback
- pySTARBURST99: The Next Generation of STARBURST99
- Red supergiant stars in IC 1613 and metallicity-dependent mixing length in the evolutionary model
- Fine structure in the luminosity function in young stellar populations with Gaia DR2
- Multi-wavelength Observations of the 2015 Nova in the Local Group Irregular Dwarf Galaxy IC 1613
- Optically-thick Structure in Early B Type Supergiant Stellar Winds at Low Metallicities
- Extremely iron-poor O-type stars in the Magellanic Bridge
- The wind properties of O-type stars at sub-SMC metallicity
- Probing Thin Winds in Massive OB Stars of the SMC with JWST/NIRSPEC Br-alpha Spectroscopy
- The Treasury of Extremely Metal-Poor O Stars