Accurately predicting the escape fraction of ionizing photons using restframe ultraviolet absorption lines
Abstract
The fraction of ionizing photons that escape high-redshift galaxies sensitively determines whether galaxies reionized the early universe. However, this escape fraction cannot be measured from high-redshift galaxies because the opacity of the intergalactic medium is large at high redshifts. Without methods to indirectly measure the escape fraction of high-redshift galaxies, it is unlikely that we will know what reionized the universe. Here, we analyze the far-ultraviolet (UV) H I (Lyman series) and low-ionization metal absorption lines of nine low-redshift, confirmed Lyman continuum emitting galaxies. We use the H I covering fractions, column densities, and dust attenuations measured in a companion paper to predict the escape fraction of ionizing photons. We find good agreement between the predicted and observed Lyman continuum escape fractions (within ) using both the H I and ISM absorption lines. The ionizing photons escape through holes in the H I, but we show that dust attenuation reduces the fraction of photons that escape galaxies. This means that the average high-redshift galaxy likely emits more ionizing photons than low-redshift galaxies. Two other indirect methods accurately predict the escape fractions: the Ly escape fraction and the optical [O III]/[O II] flux ratio. We use these indirect methods to predict the escape fraction of a sample of 21 galaxies with rest-frame UV spectra but without Lyman continuum observations. Many of these galaxies have low escape fractions (\%), but 11 have escape fractions \%. The methods presented here will measure the escape fractions of high-redshift galaxies, enabling future telescopes to determine whether star-forming galaxies reionized the early universe.
Keywords
Cite
@article{arxiv.1803.03655,
title = {Accurately predicting the escape fraction of ionizing photons using restframe ultraviolet absorption lines},
author = {J. Chisholm and S. Gazagnes and D. Schaerer and A. Verhamme and J. R. Rigby and M. Bayliss and K. Sharon and M. Gladders and H. Dahle},
journal= {arXiv preprint arXiv:1803.03655},
year = {2018}
}
Comments
Accepted for publication in A&A. 12 pages, 5 figures