The Little Galaxies that Could (Reionize the Universe): Predicting Faint End Slopes & Escape Fractions at z > 4
arXiv:1606.05352 · doi:10.1093/mnras/stx709
Abstract
The sources that reionized the universe are still unknown, but likely candidates are faint but numerous galaxies. In this paper we present results from running a high resolution, uniform volume simulation, the Vulcan, to predict the number densities of undetectable, faint galaxies and their escape fractions of ionizing radiation, , during reionization. Our approach combines a high spatial resolution, a realistic treatment of feedback and hydro processes, a strict threshold for minimum number of resolution elements per galaxy, and a converged measurement of . We calibrate our physical model using a novel approach to create realistic galaxies at z=0, so the simulation is predictive at high redshifts. With this approach we can (1) robustly predict the evolution of the galaxy UV luminosity function at faint magnitudes down to ~-15, two magnitudes fainter than observations, and (2) estimate over a large range of galaxy masses based on the detailed stellar and gas distributions in resolved galaxies. We find steep faint end slopes, implying high number densities of faint galaxies, and the dependence of on the UV magnitude of a galaxy, given by the power-law: log , with the faint population having ~35%. Convolving the UV luminosity function with (), we find an ionizing emissivity that is (1) dominated by the faintest galaxies and (2) reionizes the universe at the appropriate rate, consistent with observational constraints of the ionizing emissivity and the optical depth to the decoupling surface tau_es, without the need for additional sources of ionizing radiation.
16 pages, 12 Figures, Accepted for publication to MNRAS
References in corpus (22)
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- Astrophysics Source Code Library
- UV Luminosity Functions at redshifts z~4 to z~10: 10000 Galaxies from HST Legacy Fields
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Forming Disk Galaxies in Lambda CDM Simulations
- Escape fraction of ionizing photons during reionization: effects due to supernova feedback and runaway OB stars
- The ACS Nearby Galaxy Survey Treasury IX. Constraining asymptotic giant branch evolution with old metal-poor galaxies
- The mass evolution of the first galaxies: stellar mass functions and star formation rates at in the CANDELS GOODS-South field
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- Damped Lyman Alpha Systems in Galaxy Formation Simulations
- On the interplay between star formation and feedback in galaxy formation simulations
- A Superbubble Feedback Model for Galaxy Simulations
- The Star Formation Histories of Local Group Dwarf Galaxies II. Searching For Signatures of Reionization
- The Birth of a Galaxy. II. The Role of Radiation Pressure
- Feedback in the local LBG Analog Haro 11 as probed by far-UV and X-ray observations
- Faint dwarfs as a test of DM models: WDM vs. CDM
- Feedback in low-mass galaxies in the early Universe
- Ultra-faint high-redshift galaxies in the Frontier Fields
- Kinematic Evolution of Simulated Star-Forming Galaxies
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- Semi-analytic forecasts for JWST - I. UV luminosity functions at z = 4 - 10
- The MOSDEF Survey: Direct Observational Constraints on the Ionizing Photon Production Efficiency, , at z~2
- No missing photons for reionization: moderate ionizing photon escape fractions from the FIRE-2 simulations
- Semi-analytic forecasts for JWST -- II. physical properties and scaling relations for galaxies at z = 4-10
- The Lyman Continuum escape fraction of faint galaxies at z~3.3 in the CANDELS/GOODS-North, EGS, and COSMOS fields with LBC
- Quantifying scatter in galaxy formation at the lowest masses
- Going, going, gone dark: Quantifying the scatter in the faintest dwarf galaxies
- Semi-analytic forecasts for JWST -- IV. Implications for cosmic reionization and LyC escape fraction
- Constraining the contribution of active galactic nuclei to reionisation
- The fraction of ionizing radiation from massive stars that escapes to the intergalactic medium
- A Low Lyman Continuum Escape Fraction of for Extreme [OIII] Emitters in an Overdensity at z
- Dancing in the Dark: Uncertainty in ultra-faint dwarf galaxy predictions from cosmological simulations
- The Origins of Off-Centre Massive Black Holes in Dwarf Galaxies
- The Little Engines That Could? Globular Clusters Contribute Significantly to Reionization-era Star Formation
- Galactic ionising photon budget during the Epoch of Reionisation in the Cosmic Dawn II simulation
- Semi-analytic forecasts for JWST -- III. Intrinsic production efficiency of Lyman-continuum radiation
- Roll of the Dice: A Stochastically Sampled IMF Alters the Stellar Content of Simulated Dwarf Galaxies
- The Ionizing Photon Production Efficiency () Of Lensed Dwarf Galaxies At
- Self-shielding of hydrogen in the IGM during the epoch of reionization
- A New Signal Model for Axion Cavity Searches from N-Body Simulations
- Mapping the Escape Fraction of Ionizing Photons Using Resolved Stars: A Much Higher Escape Fraction for NGC 4214
- The influence of metagalactic ultra-violet background fluctuations on the high-redshift Ly forest
- Astraeus VIII: A new framework for Lyman- emitters applied to different reionisation scenarios
- Probing the Star Formation Main Sequence down to M at
- Modelling the star-formation activity and ionizing properties of high-redshift galaxies
- Forecasts for Broadband Intensity Mapping of the Ultraviolet-Optical Background with CASTOR and SPHEREx
- Emission Line Galaxies in the SHARDS Hubble Frontier Fields II: Limits on Lyman-Continuum Escape Fractions of Lensed Emission Line Galaxies at Redshifts 2 < z < 3.5
- Self-sustaining star formation fronts in filaments during cosmic dawn