Monthly Notices of the Royal Astronomical Society Letters · 2012 · 95 citations · 61 references
Galaxy FormationPhotometryEngineeringPhysicsData-constrained Reionization ModelsCosmologyEscape FractionLarge Scale StructureAstrophysical SimulationHigh-redshift GalaxiesLower LimitSynchrotron RadiationCosmic ReionizationObservational CosmologyHigh-energy Astrophysics
Abstract The escape fraction, fesc, of ionizing photons from high-redshift galaxies is a key parameter to understand cosmic reionization and star formation history. Yet, in spite of many efforts, it remains largely uncertain. We propose a novel, semi-empirical approach based on a simultaneous match of the most recently determined luminosity functions of galaxies in the redshift range 6 ≤ z ≤ 10 with reionization models constrained by a large variety of experimental data. From this procedure, we obtain the evolution of the best-fitting values of fesc along with their 2σ limits. We find that, averaged over the galaxy population, (i) the escape fraction increases from fesc = 0.068+ 0.054− 0.047 at z = 6 to fesc = 0.179+ 0.331− 0.132 at z = 8 and (ii) at z = 10 we can only put a lower limit of fesc > 0.146. Thus, although errors are large, there is an indication of a 2.6 times increase of the average escape fraction from z = 6 to 8, which might partially release the ‘starving reionization’ problem.
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Secondary standard stars for absolute spectrophotometry
J. B. Oke, James E. Gunn · The Astrophysical Journal · 1983 · 2.6K citations