Igniting galaxy formation in the post-reionization universe
Abstract
It is widely believed that the ultraviolet background produced during the epoch of reionization conspires against the formation of low-mass galaxies. Indeed, this mechanism is often invoked as a solution to the so-called `missing satellites problem.' In this paper we employ FIREbox, a large-volume cosmological simulation based on the Feedback In Realistic Environments (FIRE-2) physics model, to characterize the mechanisms governing galaxy ignition in the post-reionization era. By carefully matching recently-ignited halos (with stellar ages below Myr at the time of selection) to halos that failed to form any stars, we conclude that the presence of cold-dense gas and halo concentration help incite the process of galaxy formation. Concretely, we find that of recently-ignited halos experience cold-dense gas enhancements relative to their matched failed counterparts. Likewise, approximately display enhancements in both cold-dense gas and Navarro-Frenk-White concentration (), while the remaining exhibit enhanced cold-dense gas content and suppressed values. Lastly, our simulation suggests that galaxy ignition can occur as late as , potentially allowing us to observationally catch this process `in the act' in the foreseeable future.
Keywords
Cite
@article{arxiv.2511.03785,
title = {Igniting galaxy formation in the post-reionization universe},
author = {Jorge Moreno and Coral Wheeler and Francisco J. Mercado and M. Katy Rodriguez Wimberly and Jenna Samuel and Pratik J. Gandhi and Elia Cenci and Robert Feldmann and Michael Boylan-Kolchin and Andrew Wetzel and James S. Bullock and Philip F. Hopkins},
journal= {arXiv preprint arXiv:2511.03785},
year = {2025}
}
Comments
23 pages, 9 figures, accepted to ApJ