Low-metallicity massive single stars with rotation. III. Source of ionization and C-IV emission in I Zw 18
arXiv:2506.21442 · doi:10.1051/0004-6361/202452483
Abstract
Chemically homogeneously evolving stars have been proposed to account for several exotic phenomena, including gravitational-wave emissions and gamma-ray bursts. Here we study whether these stars can explain the metal-poor dwarf galaxy I Zwicky 18. We apply our synthetic spectral models from Paper II to (i) establish a classification sequence for these hot stars, (ii) predict the photonionizing flux and the strength of emission lines from a IZw18-like stellar population, and (iii) compare our predictions to available observations of this galaxy. Adding two new models computed with PoWR, we report (i) these stars to follow a unique sequence of classes: O->WN->WO (i.e. without ever being WC). From our population synthesis with standard assumptions, we predict that (ii) the source of the UV C-IV and other emission bumps is a couple dozen WO-type Wolf-Rayet stars (not WC as previously assumed) which are the result of chem. hom. evolution, while these, combined with the rest of the O-star population, account for the He-II ionizing flux and spectral hardness. Contrasting our results against published optical and UV data and accounting for different aperture sizes and spatial regions probed by the observations, we find that (iii) our models are highly consistent with them. Since our "massive Pop II stars" might just as well exist in early star-forming regions, our findings have implications for upcoming JWST surveys; and given that our results apply for binary populations too as long as the same fraction (10%) of the systems evolves chem. homogeneously, we conclude that the stellar progenitors of gravitational waves may very well exist today in IZw18.
(language-edited version)
References in corpus (32)
- Binary interaction dominates the evolution of massive stars
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- Rotational mixing in massive binaries: detached short-period systems
- The VLT-FLAMES survey of massive stars: Mass loss and rotation of early-type stars in the SMC
- On the consistent treatment of the quasi-hydrostatic layers in hot star atmospheres
- X-ray binaries as the origin of nebular HeII emission in low-metallicity star-forming galaxies
- Wolf-Rayet stars in the Small Magellanic Cloud: I. Analysis of the single WN stars
- The COS Legacy Archive Spectroscopy SurveY (CLASSY) Treasury Atlas
- Excitation properties of galaxies with the highest [OIII]/[OII] ratios: No evidence for massive escape of ionizing photons
- Grids of stellar models with rotation IV. Models from 1.7 to 120 Msun at a metallicity Z = 0.0004
- Ultra-luminous X-ray sources and neutron-star-black-hole mergers from very massive close binaries at low metallicity
- The extended HeII4686-emitting region in IZw18 unveiled: clues for peculiar ionizing sources
- Chemical Properties of Star Forming Dwarf Galaxies
- Nebular emission from young stellar populations including binary stars
- Explaining the differences in massive star models from various simulations
- A Study on the Chemical Properties of Blue Compact Dwarf Galaxies
- First stellar spectroscopy in Leo P
- WO-Type Wolf-Rayet Stars: the Last Hurrah of Massive Star Evolution
- Formation of star clusters and enrichment by massive stars in simulations of low-metallicity galaxies with a fully sampled initial stellar mass function
- Observational properties of massive black hole binary progenitors
- Heating of blue compact dwarf galaxies: gas distribution and photoionization by stars in I Zw 18
- On the contribution of the X-ray source to the extended nebular HeII emission in IZw18
- The role of stellar expansion on the formation of gravitational wave sources
- Ionization of HeII in star-forming galaxies by X-rays from cluster winds and superbubbles
- A Panchromatic Study of Massive Stars in the Extremely Metal-Poor Local Group Dwarf Galaxy Leo A
- X-ray emission from star cluster winds in starburst galaxies
- Whispering in the dark: Faint X-ray emission from black holes with OB star companions
- Signatures of Rapidly Rotating Stars with Chemically Homogeneous Evolution in the First Galaxies
- Prompt stellar and binary black hole mergers in tight triples: Insights from chemically homogeneous evolution
- Strong nebular HeII emission induced by He ionizing photons escaping through the clumpy winds of massive stars
- A MUSE/VLT spatially resolved study of the emission structure of Green Pea galaxies
- Unraveling the Kinematics of IZw18: A Detailed Study of Ionized Gas with MEGARA/GTC
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- Metal-poor single Wolf-Rayet stars: The interplay of optically thick winds and rotation
- A constant upper luminosity limit of cool supergiant stars down to the extremely low metallicity of I Zw 18
- HeII emitters at cosmic noon and beyond. Characterising the HeII λ1640 emission with MUSE and JWST/NIRSpec