The Ionizing Efficiency of the First Stars
arXiv:astro-ph/0304388 · doi:10.1086/378399
Abstract
We investigate whether a single population of first stars could have influenced both the metal enrichment and reionization of the high-redshift intergalactic medium (IGM), by calculating the generated ionizing radiation per unit metal yield as a function of the metallicity of stellar populations. We examine the relation between the ionizing radiation and carbon created by the first stars, since the evidence for the widespread enrichment of the IGM at redshifts about 3-4 comes from the detection of C IV absorption. We find that the number of ionizing photons per baryon generated in association with the detected IGM metallicity may well exceed that required for a late hydrogen reionization at of about 6, by up to a factor of 10-20 for metal-free stars in a present-day initial mass function (IMF). This would be in agreement with similar indications from recent observations of the microwave background and the high- IGM. In addition, the contribution from intermediate-mass stars to the total metal yield, neglected in past works, substantially impacts such calculations. Lastly, a top-heavy IMF is not necessarily preferred as a more efficient high- source of ionizing radiation, based on nucleosynthetic arguments in association with a given level of IGM enrichment.
5 pages, 1 figure. Accepted for publication in ApJLetters, v. 594 (Sept. 1, 2003); minor revisions, results unchanged
References in corpus (7)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- Wilkinson Microwave Anisotropy Probe (WMAP) First Year Observations: TE Polarization
- The Thermal Memory of Reionization History
- Was the Universe Reionized by Massive Population-III Stars?
- The Dark Age of the Universe
- The Epoch of Reionization in Models with Reduced Small Scale Power
- Star Formation at the Twilight of the Dark Ages: Which Stars Reionized the Universe?
Cited by in corpus (32)
- Cosmic Star Formation History
- The First Stars
- The Physics of Gamma-Ray Bursts and Relativistic Jets
- Self-regulated reionization
- The First Supernova Explosions: Energetics, Feedback, and Chemical Enrichment
- A downturn in intergalactic CIV as redshift 6 is approached
- Nucleosynthesis, Reionization, and the Mass Function of the First Stars
- Reionisation, chemical enrichment and seed black holes from the first stars: is Population III important?
- The Properties of Intergalactic C IV and Si IV Absorption, I: Optimal Analysis of an Extremely High S/N Quasar Sample
- High-Redshift Metals. II. Probing Reionization Galaxies with Low-Ionization Absorption Lines at Redshift Six
- Core-Collapse Very Massive Stars: Evolution, Explosion, and Nucleosynthesis of Population III 500 -- 1000 Stars
- From First Stars to the Spite Plateau: a Possible Reconciliation of Halo Stars Observations with Predictions from Big Bang Nucleosynthesis
- Cosmic Star Formation, Reionization, and Constraints on Global Chemical Evolution
- Hierarchical Growth and Cosmic Star Formation: Enrichment, Outflows and Supernova Rates
- Lower Metal Enrichment of Virialized Gas in Minihalos
- The Large-Scale Observational Signatures of Low-Mass Galaxies During Reionization
- The Topology of Cosmological Reionization
- Radio background and IGM heating due to Pop III supernovae explosions
- Impact of Cosmic Rays on Population III Star Formation
- The Properties of Intergalactic CIV Absorption II: Which Systems Are Associated With Galaxy Outflows?
- Early Enrichment of Quasars by First Stars
- The Radiative Transport of Dust in Primordial Galaxies and Second-Generation Star Formation
- UHE neutrinos from Pop III stars: concept and constraints
- Impacts of Dark Stars on Reionization and Signatures in the Cosmic Microwave Background
- Transition From Population III to Population II Stars
- Sources for Metals in the Intergalactic Medium
- Quark-Novae, cosmic reionization, and early r-process element production
- The glow of primordial remnants
- A Cosmic Milestone: Constraints from Metal-Poor Halo Stars on the Cosmological Reionization Epoch
- Metal Enrichment and Reionization Constraints on Early Star Formation
- Spherically symmetric NLTE model atmospheres of hot hydrogen-helium first stars
- Detecting the Transition From Pop III to Pop II Stars