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
Alex Griffiths, Christopher J. Conselice, Leonardo Ferreira, Daniel, Ceverino, Pablo G. Perez-Gonzalez, Olga Vega, Daniel Rosa-Gonzalez, Anton M., Koekemoer, Danilo Marchesini, Jose Miguel Rodr{\i}guez Espinosa, Luc{\i}a, Rodr{\i}guez-Munoz, Belen Alcalde Pampliega

TL;DR
This study investigates the escape fractions of ionizing UV photons from low-mass, emission line galaxies at redshifts 2.4 to 3.5, finding generally low escape fractions and suggesting these galaxies may not significantly contribute to cosmic reionization.
Contribution
First measurement of Lyman-continuum escape fractions in low-mass, emission line galaxies at z<3.5 using deep Hubble imaging, providing new constraints on their role in reionization.
Findings
Upper limits of ~7% on individual galaxy escape fractions
Detected potential escape flux in two galaxies at ~3.2σ significance
Low overall escape fractions imply limited contribution to reionization
Abstract
We present an investigation on escape fractions of UV photons from a unique sample of lensed low-mass emission line selected galaxies at z < 3.5 found in the SHARDS Hubble Frontier Fields medium-band survey. We have used this deep imaging survey to locate 42 relatively low-mass galaxies, down to , between redshifts 2.4 < z < 3.5 which are candidate line emitters. Using deep multi-band Hubble UVIS imaging we investigate the flux of escaping ionizing photons from these systems, obtaining 1 upper limits of ~7% for individual galaxies, and < 2% for stacked data. We measure potential escaping Lyman-continuum flux for two low-mass line emitters with values at and , both detected at the ~3.2 level. A detailed analysis of possible…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Gamma-ray bursts and supernovae
