# Inferences on the Timeline of Reionization at z~8 From the KMOS   Lens-Amplified Spectroscopic Survey

**Authors:** Charlotte A. Mason, Adriano Fontana, Tommaso Treu, Kasper B. Schmidt,, Austin Hoag, Louis Abramson, Ricardo Amorin, Marusa Bradac, Lucia Guaita,, Tucker Jones, Alaina Henry, Matthew A. Malkan, Laura Pentericci, Michele, Trenti, and Eros Vanzella

arXiv: 1901.11045 · 2019-03-05

## TL;DR

This study uses spectroscopic observations of faint, lens-amplified galaxies at z~8 to constrain the timeline of cosmic reionization, finding a high neutral hydrogen fraction indicating rapid reionization during this epoch.

## Contribution

It provides new constraints on the IGM neutral hydrogen fraction at z~8 using deep spectroscopic data and Bayesian inference, extending understanding of reionization's progression.

## Key findings

- No Lyα emission detected in the sample.
- Lower limit on neutral hydrogen fraction > 0.76 at z~8.
- Supports models with rapid reionization and low ionizing photon escape fractions.

## Abstract

Detections and non-detections of Lyman alpha (Ly$\alpha$) emission from $z>6$ galaxies ($<1$ Gyr after the Big Bang) can be used to measure the timeline of cosmic reionization. Of key interest to measuring reionization's mid-stages, but also increasing observational challenge, are observations at z > 7, where Ly$\alpha$ redshifts to near infra-red wavelengths. Here we present a search for z > 7.2 Ly$\alpha$ emission in 53 intrinsically faint Lyman Break Galaxy candidates, gravitationally lensed by massive galaxy clusters, in the KMOS Lens-Amplified Spectroscopic Survey (KLASS). With integration times of ~7-10 hours, we detect no Ly$\alpha$ emission with S/N>5 in our sample. We determine our observations to be 80% complete for 5$\sigma$ spatially and spectrally unresolved emission lines with integrated line flux $>5.7\times10^{-18}$ erg s$^{-1}$ cm$^{-2}$. We define a photometrically selected sub-sample of 29 targets at $z=7.9\pm0.6$, with a median 5$\sigma$ Ly$\alpha$ EW limit of 58A. We perform a Bayesian inference of the average intergalactic medium (IGM) neutral hydrogen fraction using their spectra. Our inference accounts for the wavelength sensitivity and incomplete redshift coverage of our observations, and the photometric redshift probability distribution of each target. These observations, combined with samples from the literature, enable us to place a lower limit on the average IGM neutral hydrogen fraction of $> 0.76 \; (68\%), \; > 0.46 \; (95\%)$ at z ~ 8, providing further evidence of rapid reionization at z~6-8. We show that this is consistent with reionization history models extending the galaxy luminosity function to $M_\textrm{UV} \lesssim -12$, with low ionizing photon escape fractions, $f_\textrm{esc} \lesssim 15\%$.

## Full text

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## Figures

22 figures with captions in the complete paper: https://tomesphere.com/paper/1901.11045/full.md

## References

175 references — full list in the complete paper: https://tomesphere.com/paper/1901.11045/full.md

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Source: https://tomesphere.com/paper/1901.11045