New constraints on the average escape fraction of Lyman continuum radiation in z~4 galaxies from the VIMOS Ultra Deep Survey (VUDS)
F. Marchi, L. Pentericci, L. Guaita, B. Ribeiro, M. Castellano, D., Schaerer, N.P. Hathi, B.C. Lemaux, A. Grazian, O. Le Fevre, B. Garilli, D., Maccagni, R. Amorin, S. Bardelli, P. Cassata, A. Fontana, A.M. Koekemoer, V., Le Brun, L.A.M. Tasca, R. Thomas, E. Vanzella

TL;DR
This study measures the escape fraction of Lyman continuum radiation in z~4 galaxies using deep spectroscopy and imaging, finding it to be modest and providing new constraints relevant for understanding cosmic reionization.
Contribution
First direct measurement of the average escape fraction of LyC photons in z~4 galaxies using VUDS data and careful source cleaning.
Findings
Estimated relative escape fraction is 0.09±0.04.
No individual LyC detections, but one possible high-EW LyC emitter.
LyC flux is very modest, consistent with previous upper limits.
Abstract
Determining the average fraction of Lyman continuum (LyC) photons escaping high redshift galaxies is essential for understanding how reionization proceeded in the z>6 Universe. We want to measure the LyC signal from a sample of sources in the Chandra Deep Field South (CDFS) and COSMOS fields for which ultra-deep VIMOS spectroscopy as well as multi-wavelength Hubble Space Telescope (HST) imaging are available. We select a sample of 46 galaxies at from the VIMOS Ultra Deep Survey (VUDS) database, such that the VUDS spectra contain the LyC part of the spectra, that is, the rest-frame range . Taking advantage of the HST imaging, we apply a careful cleaning procedure and reject all the sources showing nearby clumps with different colours, that could potentially be lower-redshift interlopers. After this procedure, the sample is reduced to 33 galaxies. We measure the…
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