English

Heating of the Intergalactic Medium by Hydrogen Reionization

Cosmology and Nongalactic Astrophysics 2019-04-10 v2 Astrophysics of Galaxies

Abstract

During reionization, the intergalactic medium is heated impulsively by supersonic ionization fronts (I-fronts). The peak gas temperatures behind the I-fronts, TreionT_\mathrm{reion}, 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 TreionT_\mathrm{reion}. We show that TreionT_\mathrm{reion} 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 TreionT_\mathrm{reion} 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 Treion=17,00022,000T_\mathrm{reion} = 17,000-22,000 K are typical during the first half of reionization, but Treion=25,00030,000T_\mathrm{reion} = 25,000 - 30,000 K may be achieved near the end of this process if I-front speeds reach 104\sim10^4 km/s as found in our simulations. Shorter reionization epochs lead to hotter TreionT_\mathrm{reion}. We discuss implications for z>5z>5 Lyα\alpha 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 TreionT_\mathrm{reion} 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

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