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The gradual decline of Lyα visibility in the CANDELS fields: evidence for the combined effects of galaxy evolution and reionization

L. Napolitano, L. Pentericci, A. Ferrara, M. Llerena, M. Dickinson, A. Calabrò, S. L. Finkelstein, R. Begley, P. Arrabal Haro, A. Arroyo-Polonio, B. E. Backhaus, D. Bevacqua, A. Bhagwat, M. Bischetti, M. Castellano, S. -J. Chang, E. R. Cueto, V. D'Odorico, C. T. Donnan, M. Galbiati, G. Gandolfi, M. Giavalisco, M. Hirschmann, J. Kartaltepe, A. M. Koekemoer, K. K. Knudsen, R. A. Lucas, S. Mascia, L. Paquereau, B. Pérez-D\'ıaz, C. Piscitelli, R. Rana, P. Santini, A. J. Taylor, E. Taylor, R. Tripodi, S. M. Wilkins, L. Y. A. Yung

astro-ph.GAarXiv:2609.00199

Abstract

We investigate the evolution of Lyα visibility and the physical properties of Lyα emitters (LAEs) across the five CANDELS fields using publicly available JWST/NIRSpec PRISM spectroscopy. Our catalog comprises 3446 spectroscopically confirmed sources at 4 ≤ z < 14.2, including 3361 star-forming galaxies (SFGs), of which 539 are robust (S/N > 3) LAEs. We measure the fraction of LAEs with EW0 > 25A (XLyα) and trace its redshift evolution in two UV luminosity bins, namely -20.25 < MUV < -18.75 and -21.75 < MUV < -20.25. Within the fainter-UV range, XLyα increases from z = 5 to z = 6 at 3σ significance and subsequently declines toward higher redshifts with a significant monotonic trend at z > 6. We also investigate the physical properties of both LAEs and the full SFG population. We find that the stellar mass, UV slope β, stellar reddening, SFR, metallicity, sSFR, and burstiness of LAEs remain approximately stable with redshift. The only exception is the mass-weighted age which decreases with increased redshift. Conversely, the properties of the full SFG population evolve significantly, progressively approaching the region of galaxy-property space occupied by LAEs as redshift increases. This suggests that galaxy evolution may enhance the intrinsic production and escape of Lyα photons toward earlier epochs. We argue that this effect should be accounted when inferring the evolution of the neutral hydrogen content of the IGM from the observed visibility of Lyα emission. To this end, we employ a physically motivated framework based on the Attenuation-Free Model, jointly accounting for galaxy evolution and IGM attenuation. Our observations favor reionization histories that proceed gradually over scenarios characterized by a rapid increase in the cosmic neutral hydrogen fraction.

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