The Great Observatories Origins Deep Survey: Constraints on the Lyman Continuum Escape Fraction Distribution of Lyman--Break Galaxies at 3.4<z<4.5
E. Vanzella, M. Giavalisco, A. Inoue, M. Nonino, F. Fontanot, S., Cristiani, A. Grazian, M. Dickinson, D. Stern, P. Tozzi, E. Giallongo, H., Ferguson, H. Spinrad, K. Boutsia, A. Fontana, P. Rosati

TL;DR
This study uses deep ultraviolet imaging to constrain the distribution of ionizing radiation escape fractions from high-redshift Lyman Break Galaxies, finding median values below 6%, which impacts understanding of cosmic reionization.
Contribution
It provides the first direct detection of Lyman continuum emission from a high-redshift galaxy and models the escape fraction distribution considering various astrophysical factors.
Findings
Median escape fraction is lower than ~6%.
Upper limit on average escape fraction is 5-20%.
Fainter galaxies may have higher escape fractions.
Abstract
We use ultra-deep ultraviolet VLT/VIMOS intermediate-band and VLT/FORS1 narrow-band imaging in the GOODS Southern field to derive limits on the distribution of the escape fraction (f_esc) of ionizing radiation for L >~ L*(z=3) Lyman Break Galaxies (LBGs) at redshift 3.4--4.5. Only one LBG, at redshift z=3.795, is detected in its Lyman continuum (LyC; S/N~5.5), the highest redshift galaxy currently known with a direct detection. Its ultraviolet morphology is quite compact (R_eff=0.8, kpc physical). Three out of seven AGN are also detected in their LyC, including one at redshift z=3.951 and z850 = 26.1. From stacked data (LBGs) we set an upper limit to the average f_esc in the range 5%--20%, depending on the how the data are selected (e.g., by magnitude and/or redshift). We undertake extensive Monte Carlo simulations that take into account intergalactic attenuation, stellar population…
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