Probing Patchy Reionization with the Void Probability Function of Lyman-$\alpha$ Emitters
Lucia A. Perez, Sangeeta Malhotra, James E. Rhoads, Peter Laursen,, Isak G.B. Wold

TL;DR
This study explores how the Void Probability Function (VPF) of Lyman-alpha emitters can constrain the ionized hydrogen fraction during reionization, demonstrating that survey area impacts the ability to distinguish different ionization levels.
Contribution
It introduces the use of VPF clustering analysis on LAEs to improve constraints on reionization, highlighting the effectiveness of survey area in differentiating ionization states.
Findings
A single LAGER field can distinguish neutral from ionized regions.
Four fields can differentiate 30%, 50%, and 95% ionization.
Eight fields can identify multiple ionization levels up to 95%.
Abstract
We probe what constraints for the global ionized hydrogen fraction the Void Probability Function (VPF) clustering can give for the Lyman-Alpha Galaxies in the Epoch of Reionization (LAGER) narrowband survey as a function of area. Neutral hydrogen acts like a fog for Lyman-alpha emission, and measuring the drop in the luminosity function of Lyman- emitters (LAEs) has been used to constrain the ionization fraction in narrowband surveys. However, the clustering of LAEs is independent from the luminosity function's inherent evolution, and can offer additional constraints for reionization under different models. The VPF measures how likely a given circle is to be empty. It is a volume-averaged clustering statistic that traces the behavior of higher order correlations, and its simplicity offers helpful frameworks for planning surveys. Using the \citet{Jensen2014} simulations of LAEs…
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Taxonomy
TopicsScientific Research and Discoveries
