Low-mass galaxy formation and the ionizing photon budget during reionization
arXiv:1405.7459 · doi:10.1093/mnras/stu1328
Abstract
We use high-resolution simulations of cosmological volumes to model galaxy formation at high-redshift, with the goal of studying the photon budget for reionization. We demonstrate that galaxy formation models that include a strong, thermally coupled supernovae scheme reproduce current observations of star formation rates and specific star formation rates, both during and after the reionization era. These models produce enough UV photons to sustain reionization at z<8 (z<6) through a significant population of faint, unobserved, galaxies for an assumed escape fraction of 20% (5%). This predicted population is consistent with extrapolation of the faint end of observed UV luminosity functions. We find that heating from a global UV/X-ray background after reionization causes a dip in the total global star formation rate density in galaxies below the current observational threshold. Finally, while the currently observed specific star formation rates are incapable of differentiating between supernovae feedback models, sufficiently deep observations will be able to use this diagnostic in the future to investigate galaxy formation at high redshift.
13 pages, 10 figures, 1 table. MNRAS accepted, changed to reflect published version
References in corpus (10)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- UltraVISTA: a new ultra-deep near-infrared survey in COSMOS
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- UV Luminosity Functions at z~4, 5, and 6 from the HUDF and other Deep HST ACS Fields: Evolution and Star Formation History
- The observed ionization rate of the intergalactic medium and the ionizing emissivity at z >5: Evidence for a photon starved and extended epoch of reionization
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- Minihalo photoevaporation during cosmic reionization: evaporation times and photon consumption rates
- The Luminosity Function at z~8 from 97 Y-band dropouts: Inferences About Reionization
- Photo-heating and supernova feedback amplify each other's effect on the cosmic star formation rate
Cited by in corpus (5)
- The Evolution of Galaxy Number Density at z < 8 and its Implications
- Cosmic Reionization On Computers II. Reionization History and Its Back Reaction on Early Galaxies
- The Reionization of Carbon
- Dark-ages Reionization & Galaxy Formation Simulation VIII. Suppressed growth of dark matter halos during the Epoch of Reionization
- Dark-ages reionization and galaxy formation simulation - IX. Economics of reionizing galaxies