Looking for nebular He II emission south of the multiple-massive star system, HD 5980
arXiv:2303.04243 · doi:10.1093/mnras/stac3732
Abstract
The nebular He II λ1640 emission line is observed in star forming galaxies out to large distances and can be used to constrain the properties of sources of He+ ionizing photons. For this purpose, it is crucial to understand which are the main stellar sources of these photons. In some nearby metal poor starburst galaxies, nebular He II λ4686 (optical equivalent) is accompanied by a broad underlying component, which is generally attributed to formation in the winds of classical (He burning) Wolf Rayet stars, primarily of the WN subtype. In such cases, the origin of the nebular component has been proposed to be the escape of He+ ionizing photons from the winds of the WN stars, at least partially. We use archival long slit observations obtained with Focal Reducer Low Dispersion Spectrograph (FORS1) on the Very Large Telescope to look for nebular He II λ4686 emission south of the WN6h + WN6(7) close binary in HD 5980. We only find broad He II λ4686 emission, as far as aprox. 7.6 pc from the binary. A comparison with observations obtained with Space Telescope Imaging Spectrograph (STIS) on the Hubble Space Telescope, at a similar orbital phase, shows that the FORS1 broad He II emission is likely contamination from the multiple star system HD 5980. We use models to show that no significant He+ ionizing flux is expected from the WN stars in HD 5980 and that when similar stars are present in a coeval stellar population, the O stars can be far greater emitters of He+ ionizing radiation.
17 pages, 16 figures
References in corpus (26)
- Physical Properties of Wolf-Rayet Stars
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- The MAPPINGS III Library of Fast Radiative Shock Models
- Modelling the nebular emission from primeval to present-day star-forming galaxies
- An excess of massive stars in the local 30 Doradus starburst
- Ultraviolet spectra of extreme nearby star-forming regions --- approaching a local reference sample for JWST
- On the consistent treatment of the quasi-hydrostatic layers in hot star atmospheres
- New predictions for radiation-driven, steady-state mass-loss and wind-momentum from hot, massive stars II. A grid of O-type stars in the Galaxy and the Magellanic Clouds
- Testing massive star evolution, star-formation history and feedback at low metallicity : Spectroscopic analysis of OB stars in the SMC Wing
- The R136 star cluster dissected with Hubble Space Telescope/STIS. II. Physical properties of the most massive stars in R136
- Past and present star formation in the SMC: NGC 346 and its neighborhood
- Why binary interaction does not necessarily dominate the formation of Wolf-Rayet stars at low metallicity
- The extended HeII4686-emitting region in IZw18 unveiled: clues for peculiar ionizing sources
- Metallicity-dependent wind parameter predictions for OB stars
- The Detection and Characterization of Be+sdO Binaries from HST/STIS FUV Spectroscopy
- The Stellar Mass Distribution in the Giant Star Forming Region NGC 346
- Determination of the primordial helium abundance based on NGC 346 an HII region of the Small Magellanic Cloud
- NGC 346 in the Small Magellanic Cloud. III. Recent Star Formation and Stellar Clustering Properties in the Bright HII Region N 66
- A census of massive stars in NGC 346. Stellar parameters and rotational velocities
- The HD5980 multiple system: Masses and evolutionary status
- CLASSY II: A technical Overview of the COS Legacy Archive Spectroscopic SurveY
- Spectroscopic evolution of massive stars on the main sequence
- Stellar wind properties of the nearly complete sample of O stars in the low metallicity young star cluster NGC346 in the SMC galaxy
- Stars and gas in the most metal-poor galaxies I: COS and MUSE observations of SBS 0335-052E
- On the contribution of the X-ray source to the extended nebular HeII emission in IZw18
- MEGARA-IFU detection of extended HeII4686 nebular emission in the central region of NGC1569 and its ionization budget
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