Impact of Self-shielding Minihalos on the Ly$\alpha$ Forest at High Redshift
Abstract
Dense gas in minihalos with masses of can shield themselves from reionization for Myr after being exposed to the UV background. These self-shielded systems, often unresolved in cosmological simulations, can introduce strong absorption in quasar spectra. This paper is the first systematic study on the impact of these systems on the Ly forest. We first derive the HI column density profile of photoevaporating minihalos by conducting 1D radiation-hydrodynamics simulations. We utilize these results to estimate the Ly opacity from minihalos in a large-scale simulation that cannot resolve self-shielding. When the ionization rate of the background radiation is , as expected near the end of reionization at , we find that the incidence rate of damped Ly absorbers increases by a factor of compared to at . The Ly flux is, on average, suppressed by of its mean due to minihalos. The absorption features enhance the 1D power spectrum up to at , which is comparable to the enhancement caused by inhomogeneous reionization. The flux is particularly suppressed in the vicinity of large halos along the line-of-sight direction at separations of up to at . However, these effects become much smaller for higher ionizing rates () expected in the post-reionization Universe. Our findings highlight the need to consider minihalo absorption when interpreting the Ly forest at . Moreover, the sensitivity of these quantities to the ionizing background intensity can be exploited to constrain the intensity itself.
Keywords
Cite
@article{arxiv.2309.04129,
title = {Impact of Self-shielding Minihalos on the Ly$\alpha$ Forest at High Redshift},
author = {Hyunbae Park and Zarija Lukić and Jean Sexton and Marcelo Alvarez and Paul R. Shapiro},
journal= {arXiv preprint arXiv:2309.04129},
year = {2024}
}
Comments
16 pages; 11 figures; Accepted for publication in ApJ