Lyman Alpha Emitters at z=7 in the Subaru/XMM-Newton Deep Survey Field: Photometric Candidates and Luminosity Function
Kazuaki Ota, Masanori Iye, Nobunari Kashikawa, Kazuhiro Shimasaku,, Masami Ouchi, Tomonori Totani, Masakazu A. R. Kobayashi, Masahiro Nagashima,, Atsushi Harayama, Natsuki Kodaka, Tomoki Morokuma, Hisanori Furusawa, Akito, Tajitsu, Takashi Hattori

TL;DR
This study used a deep narrowband survey to identify z=7 Lyman alpha emitters, finding a significant decrease in their luminosity function compared to lower redshifts, which may indicate ongoing reionization at z=7.
Contribution
First deep survey with enhanced sensitivity to z=7 LAEs, providing new constraints on their luminosity function and implications for cosmic reionization.
Findings
Detected three probable z=7 LAE candidates.
Found a significant deficit in the Lyman alpha luminosity function at z=7 compared to z=5.7.
Suggests incomplete reionization of the universe at z=7.
Abstract
We conducted a deep narrowband NB973 (FWHM = 200 A centered at 9755 A) survey of z=7 Lyman alpha emitters (LAEs) in the Subaru/XMM-Newton Deep Survey Field, using the fully depleted CCDs newly installed on the Subaru Telescope Suprime-Cam, which is twice more sensitive to z=7 Lyman alpha at ~ 1 micron than the previous CCDs. Reaching the depth 0.5 magnitude deeper than our previous survey in the Subaru Deep Field that led to the discovery of a z=6.96 LAE, we detected three probable z=7 LAE candidates. Even if all the candidates are real, the Lyman alpha luminosity function (LF) at z=7 shows a significant deficit from the LF at z=5.7 determined by previous surveys. The LAE number and Lyman alpha luminosity densities at z=7 is ~ 7.7-54% and ~5.5-39% of those at z=5.7 to the Lyman alpha line luminosity limit of L(Ly-alpha) >~ 9.2 x 10^{42} erg s^{-1}. This could be due to evolution of the…
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