Runaway Stars and the Escape of Ionizing Radiation from High-Redshift Galaxies
arXiv:1205.3495 · doi:10.1088/0004-637X/755/2/123
Abstract
Approximately 30% of all massive stars in the Galaxy are runaways with velocities exceeding 30 km/s. Their high speeds allow them to travel ~0.1-1 kpc away from their birth place before they explode at the end of their several Myr lifetimes. At high redshift, when galaxies were much smaller than in the local universe, runaways could venture far from the dense inner regions of their host galaxies. From these large radii, and therefore low column densities, much of their ionizing radiation is able to escape into the intergalactic medium. Runaways may therefore significantly enhance the overall escape fraction of ionizing radiation, fesc, from small galaxies at high redshift. We present simple models of the high-redshift runaway population and its impact on fesc as a function of halo mass, size, and redshift. We find that the inclusion of runaways enhances fesc by factors of ~1.1-8, depending on halo mass, galaxy geometry, and the mechanism of runaway production, implying that runaways may contribute 50-90% of the total ionizing radiation escaping from high-redshift galaxies. Runaways may therefore play an important role in reionizing the universe.
9 pages, 4 figures, resubmitted to ApJ after responding to referee report
References in corpus (10)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- The Formation of Population III Binaries from Cosmological Initial Conditions
- The Direct Detection of Lyman-Continuum Emission from Star-forming Galaxies at z~3
- The role of stellar feedback in the formation of galaxies
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- New Constraints on the Lyman Continuum Escape Fraction at z~1.3
- Feedback in the local LBG Analog Haro 11 as probed by far-UV and X-ray observations
- The First Galaxies: Assembly of Disks and Prospects for Direct Detection
- The Effect of Galactic Properties on the Escape Fraction of Ionizing Photons
- Modeling Lyman continuum emission from young galaxies
Cited by in corpus (46)
- The Birth of a Galaxy - III. Propelling reionisation with the faintest galaxies
- CLASH: Three Strongly Lensed Images of a Candidate z ~ 11 Galaxy
- Escape fraction of ionizing photons during reionization: effects due to supernova feedback and runaway OB stars
- Massive runaways and walkaway stars
- Fluctuating feedback-regulated escape fraction of ionizing radiation in low-mass, high-redshift galaxies
- Galaxy Properties and UV Escape Fractions During Epoch of Reionization: Results from the Renaissance Simulations
- CANDELS: The Contribution of the Observed Galaxy Population to Cosmic Reionization
- The spectral evolution of the first galaxies. II. Spectral signatures of Lyman continuum leakage from galaxies in the reionization epoch
- Feedback-regulated star formation and escape of LyC photons from mini-haloes during reionisation
- Escape of Lyman continuum radiation from local galaxies - Detection of leakage from the young starburst Tol 1247-232
- The Difficulty of Getting High Escape Fractions of Ionizing Photons from High-redshift Galaxies: a View from the FIRE Cosmological Simulations
- New synthesis models of consistent extragalactic background light over cosmic time
- The LyA-LyC Connection: Evidence for an Enhanced Contribution of UV-faint Galaxies to Cosmic Reionization
- Binary Stars Can Provide the "Missing Photons" Needed for Reionization
- Dynamical ejections of massive stars from young star clusters under diverse initial conditions
- Constraints on the production and escape of ionizing radiation from the emission-line spectra of metal-poor star-forming galaxies
- No missing photons for reionization: moderate ionizing photon escape fractions from the FIRE-2 simulations
- Keck Spectroscopy of Gravitationally Lensed z=4 Galaxies: Improved Constraints on the Escape Fraction of Ionizing Photons
- The redshift evolution of escape fraction of hydrogen ionizing photons from galaxies
- A Deep Hubble and Keck Search for Definitive Identification of Lyman Continuum Emitters at z~3.1
- Supernova feedback in numerical simulations of galaxy formation: separating physics from numerics
- The size-luminosity relation at z=7 in CANDELS and its implication on reionization
- Supernova feedback in a local vertically stratified medium: interstellar turbulence and galactic winds
- Carbon-Enhanced Metal-Poor Stars: Relics from the Dark Ages
- The First Galaxies: Assembly under Radiative Feedback from the First Stars
- The Evolution and Properties of Rotating Massive Star Populations
- The Formation and Evolution of Wide-Orbit Stellar Multiples In Magnetized Clouds
- The Lyman Continuum Escape Fraction of The Cosmic Horseshoe: A Test of Indirect Estimates
- New constraints on the average escape fraction of Lyman continuum radiation in z~4 galaxies from the VIMOS Ultra Deep Survey (VUDS)
- Properties of QSO Metal Line Absorption Systems at High Redshifts: Nature and Evolution of the Absorbers and New Evidence on Escape of Ionizing Radiation from Galaxies
- Limits on the LyC signal from z~3 sources with secure redshift and HST coverage in the E-CDFS field
- Diffuse Ionized Gas in Simulations of Multiphase, Star-Forming Galactic Disks
- Searching for candidates of Lyman continuum sources - revisiting the SSA22 field
- The VLT-FLAMES Tarantula Survey: Observational evidence for two distinct populations of massive runaway stars in 30 Doradus
- Dynamics of H II regions around exiled O stars
- The Faint Host Galaxies of C IV Absorbers at z > 5
- Ionizing photon production and escape fractions during cosmic reionization in the TNG50 simulation
- Delayed Photons from Binary Evolution Help Reionize the Universe
- Two waves of massive stars running away from the young cluster R136
- Anatomy of an ionized bubble: NIRCam grism spectroscopy of the double-peaked Lyman- emitter COLA1 and its environment
- Cosmological Impact of Population III Binaries
- Constraining the escape fraction of ionizing photons from HII regions within NGC 300: A concept paper
- Pre-supernova feedback mechanisms drive the destruction of molecular clouds in nearby star-forming disc galaxies
- Supernovae from stellar mergers and accretors of binary mass transfer: Implications for Type IIP, 1987A-like and interacting supernovae
- An observational study of rotation and binarity of Galactic O-type runaway stars
- The bound origin of low-mass stellar binaries