Formation of Massive Population III Galaxies through Photoionization Feedback: A Possible Explanation for CR7
Abstract
We explore the formation of massive high-redshift Population III (Pop III) galaxies through photoionization feedback. We consider dark matter halos formed from progenitors that have undergone no star formation as a result of early reionization and photoevaporation caused by a nearby galaxy. Once such a halo reaches , corresponding to the Jeans mass of the photoheated intergalactic medium (IGM) at , pristine gas is able to collapse into the halo, potentially producing a massive Pop III starburst. We suggest that this scenario may explain the recent observation of strong He II 1640~\AA~line emission in CR7, which is consistent with of young Pop III stars. Such a large mass of Pop III stars is unlikely without the photoionization feedback scenario, because star formation is expected to inject metals into halos above the atomic cooling threshold ( at ). We use merger trees to analytically estimate the abundance of observable Pop III galaxies formed through this channel, and find a number density of at (the redshift of CR7). This is approximately a factor of ten lower than the density of Ly emitters as bright as CR7.
Keywords
Cite
@article{arxiv.1602.04843,
title = {Formation of Massive Population III Galaxies through Photoionization Feedback: A Possible Explanation for CR7},
author = {Eli Visbal and Zoltan Haiman and Greg L. Bryan},
journal= {arXiv preprint arXiv:1602.04843},
year = {2016}
}
Comments
5 pages, 4 figures, replaced with version accepted by MNRAS Letters