Ly${\alpha}$-Lyman Continuum connection in 3.5 < z < 4.3 star-forming galaxies from the VUDS survey
F. Marchi, L. Pentericci, L. Guaita, D. Schaerer, A. Verhamme, M., Castellano, B. Ribeiro, B. Garilli, O. Le F\`evre, R. Amorin, S. Bardelli, P., Cassata, A. Durkalec, A. Grazian, N.P. Hathi, B. C. Lemaux, D. Maccagni, E., Vanzella, and E. Zucca

TL;DR
This study investigates the connection between Lyα emission and Lyman Continuum escape in star-forming galaxies at z=3.5-4.3, identifying key galaxy properties linked to LyC leakage that could inform reionization sources.
Contribution
It introduces new correlations between galaxy properties and LyC emission, highlighting the significance of UV compactness and strong Lyα emission as indicators of LyC leakage.
Findings
Galaxies with high EWLya and small rUV show higher LyC flux.
Low Lyα extension correlates with increased LyC emission.
Statistical analysis suggests some galaxies have genuine LyC leakage.
Abstract
To identify the galaxies responsible for the reionization of the Universe, we must rely on the investigation of the Lyman Continuum (LyC) properties of z<5 star-forming galaxies, where we can still directly observe their ionizing radiation. We selected a sample of 201 star-forming galaxies from the Vimos Ultra Deep Survey at 3.5<z<4.3 to explore the validity of some of the proposed indirect indicators of LyC radiation. We created subsamples of galaxies with EWLya>70{\AA}, Lya(ext)<5.7kpc, rUV<0.3kpc and |Dv Lya|<200km/s, stacked all the galaxies in each subsample and measured the flux density ratio fnu(895)/fnu(1470), that we consider to be a proxy for LyC emission. We compared these ratios to those obtained for the complementary samples. We find that the stacks of galaxies which are UV compact (rUV<0.3kpc) and have bright Lya emission (EWLya>70{\AA}), have much higher LyC fluxes…
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