A New Constraint on Reionization from Evolution of the Ly Luminosity Function at Probed by a Deep Census of Ly Emitter Candidates to 0.3
arXiv:1703.02501 · doi:10.3847/1538-4357/aa7a0a
Abstract
We detect 20 Ly emitter (LAE) candidates to erg s or and in Mpc volume in the Subaru Deep Field and the Subaru/XMM-Newton Deep Survey field by 82 and 37 hours of Subaru Suprime-Cam narrowband NB973 and reddest optical -band imaging. We compare their Ly and UV luminosity functions (LFs) and densities and Ly equivalent widths (EWs) to those of , 6.6 and 7.3 LAEs from previous Suprime-Cam surveys. The Ly LF (density) rapidly declines by a factor of 1.5 (1.9) in at (160 Myr), 1.5 (1.6) at (60 Myr) at the faint end and 2.0 (3.8) at (40 Myr). Also, in addition to the systematic decrease in EW at previously found, 2/3 of the LAEs detected in the UV continuum exhibit lower EWs than the ones. Moreover, while the UV LF and density do not evolve at , they modestly decline at , implying galaxy evolution contributing to the decline of the Ly LF. Comparison of the Ly LF to the one predicted by an LAE evolution model further reveals that galaxy evolution alone cannot explain all the decline of Ly LF. If we attribute the discrepancy to Ly attenuation by neutral hydrogen, the intergalactic medium transmission of Ly photons at would be . It is lower (higher) than at (7.3) derived by previous studies, suggesting rapid increase in neutral fraction at .
37 Pages, 22 Figures, 10 Tables, Accepted for publication in ApJ