Keck Spectroscopy of Faint 3<z<7 Lyman Break Galaxies: - I. New constraints on cosmic reionisation from the luminosity and redshift-dependent fraction of Lyman-alpha emission
Daniel P. Stark, Richard S. Ellis, Kuenley Chiu, Masami Ouchi, Andrew, Bunker

TL;DR
This study uses Keck spectroscopy of faint Lyman Break Galaxies between redshifts 3 and 7 to analyze the evolution of Lyman-alpha emission, providing new constraints on cosmic reionisation and the factors influencing Lya visibility.
Contribution
It offers the largest dataset to date on UV-faint LBGs, analyzing how Lya emission fraction varies with redshift and luminosity, and explores dust and gas effects on Lya transmission during reionisation.
Findings
Low luminosity galaxies exhibit stronger Lya emission more frequently.
Lya fraction increases with redshift from 3 to 6 at fixed luminosity.
Tentative decrease in Lya fraction at z~7 suggests increased neutral hydrogen.
Abstract
We present results from a new Keck spectroscopic survey of UV-faint LBGs in the redshift range 3<z<7. Combined with earlier Keck and published ESO VLT data, our sample contains more than 600 dropouts, offering new insight into the nature of sub-L* sources typical of those likely to dominate the cosmic reionisation process. Here we use this sample to characterise the fraction of strong Lya emitters within the continuum-selected dropouts. By quantifying how the "Lya fraction" varies with redshift, we seek to constrain changes in Lya transmission associated with reionisation. In order to distinguish the effects of reionisation from other factors which affect the Lya fraction (e.g. dust, ISM kinematics), we study the luminosity and redshift-dependence of the Lya fraction over 3<z<6, when the IGM is known to be ionised. These results reveal that low luminosity galaxies show strong Lya…
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