The Ionizing Spectra of Extremely Metal-Poor O Stars: Constraints from the Only HII Region in Leo P
arXiv:2210.17535 · doi:10.3847/1538-4357/aca896
Abstract
Metal-poor, star-forming dwarf galaxies produce extreme nebular emission and likely played a major role in cosmic reionization. Yet, determining their contribution to the high-redshift ionizing photon budget is hampered by the lack of observations constraining the ionizing spectra of individual massive stars more metal-poor than the Magellanic Clouds (20-50%). We present new Keck Cosmic Web Imager (KCWI) optical integral field unit spectroscopy of the only HII region in Leo P (3%), which is powered by a single O star. We calculate the required production rate of photons capable of ionizing H and He from the observed H and HeI4471 emission-line fluxes. Remarkably, we find that the ionizing photon production rate and spectral hardness predicted by a TLUSTY model fit to the stellar SED agrees with our observational measurements within the uncertainties. We then fit Cloudy photoionization models to the full suite of optical emission lines in the KCWI data and show that the shape of the same TLUSTY ionizing continuum simultaneously matches lines across a wide range of ionization energies. Finally, we detect OIII] and NIII] nebular emission in the Hubble Space Telescope far-ultraviolet spectrum of the Leo P HII region, and highlight that the rarely observed NIII] emission cannot be explained by our Cloudy models. These results provide the first observational evidence that widely used, yet purely theoretical, model spectra accurately predict the ionizing photon production rate from late-O stars at very low metallicity, validating their use to model metal-poor galaxies both locally and at high redshift.
Submitted to AAS Journals; comments welcome! 9 figures, 19 pages
References in corpus (28)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Binary interaction dominates the evolution of massive stars
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- PyNeb: a new tool for analyzing emission lines. I. Code description and validation of results
- Conditions for Reionizing the Universe with A Low Galaxy Ionizing Photon Escape Fraction
- Ultraviolet Emission Lines in Young Low Mass Galaxies at z~2: Physical Properties and Implications for Studies at z>7
- The Low-Redshift Lyman Continuum Survey I: New, Diverse Local Lyman-Continuum Emitters
- The Far-Ultraviolet Continuum Slope as a Lyman Continuum Escape Estimator at High-redshift
- The [OIII]H Equivalent Width Distribution at z7: Implications for the Contribution of Galaxies to Reionization
- 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 COS Legacy Archive Spectroscopy SurveY (CLASSY) Treasury Atlas
- Searching for Extremely Blue UV Continuum Slopes at in JWST/NIRCam Imaging: Implications for Stellar Metallicity and Ionizing Photon Escape in Early Galaxies
- An uncontaminated measurement of the escaping Lyman continuum at
- CLASSY IV: Exploring UV diagnostics of the interstellar medium in local high- analogs at the dawn of the JWST era
- The Efficiency of Stellar Reionization: Effects of Rotation, Metallicity, and Initial Mass Function
- Feedback in low-mass galaxies in the early Universe
- Near-Infrared Spectroscopy of Galaxies During Reionization: Measuring CIII] in a Galaxy at
- ALFALFA Discovery of the Nearby Gas-rich Dwarf Galaxy Leo P. V. Neutral Gas Dynamics and Kinematics
- The Low-redshift Lyman-continuum Survey: [S II]-deficiency and the leakage of ionizing radiation
- The Leoncino Dwarf Galaxy: Exploring the Low-Metallicity End of the Luminosity-Metallicity and Mass-Metallcity Relations
- The ionizing radiation from massive stars and its impact on HII regions: results from modern model atmospheres
- First stellar spectroscopy in Leo P
- Spectroscopic evolution of massive stars near the main sequence at low metallicity
- Far-Ultraviolet Spectra of Main-Sequence O Stars at Extremely Low Metallicity
- Ionizing photon production of Population III stars: effects of rotation, convection, and initial mass function
- Halpha and [S II] emission from warm ionized gas in the Scutum-Centaurus Arm
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