Heating of the Intergalactic Medium by Hydrogen Reionization
Abstract
During reionization, the intergalactic medium is heated impulsively by supersonic ionization fronts (I-fronts). The peak gas temperatures behind the I-fronts, , are a key uncertainty in models of the thermal history after reionization. Here we use high-resolution radiative transfer simulations to study the parameter space of . We show that is only mildly sensitive to the spectrum of incident radiation over most of the parameter space, with temperatures set primarily by I-front speeds. We also explore what current models of reionization predict for by measuring I-front speeds in cosmological radiative transfer simulations. We find that the post-I-front temperatures evolve toward hotter values as reionization progresses. Temperatures of K are typical during the first half of reionization, but K may be achieved near the end of this process if I-front speeds reach km/s as found in our simulations. Shorter reionization epochs lead to hotter . We discuss implications for Ly forest observations, which potentially include sight lines through hot, recently reionized patches of the Universe. Interpolation tables from our parameter space study are made publicly available, along with a simple fit for the dependence of on the I-front speed.
Keywords
Cite
@article{arxiv.1807.09282,
title = {Heating of the Intergalactic Medium by Hydrogen Reionization},
author = {Anson D'Aloisio and Matthew McQuinn and Oliver Maupin and Frederick B. Davies and Hy Trac and Spencer Fuller and Phoebe R. Upton Sanderbeck},
journal= {arXiv preprint arXiv:1807.09282},
year = {2019}
}
Comments
Accepted by ApJ. Results unchanged. Added (1) tests showing that conclusions are unaltered by density fluctuations; (2) analytic discussion that provides intuition for numerical results