A constraint on light primordial black holes from the interstellar medium temperature
High Energy Physics - Phenomenology
2021-05-12 v2 Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
Abstract
Primordial black holes are a viable dark matter candidate. They decay via Hawking evaporation. Energetic particles from the Hawking radiation interact with interstellar gas, depositing their energy as heat and ionization. For a sufficiently high Hawking temperature, fast electrons produced by black holes deposit a substantial fraction of energy as heat through the Coulomb interaction. Using the dwarf galaxy Leo T, we place an upper bound on the fraction of primordial black hole dark matter. For , our bound is competitive with or stronger than other bounds.
Cite
@article{arxiv.2007.07739,
title = {A constraint on light primordial black holes from the interstellar medium temperature},
author = {Hyungjin Kim},
journal= {arXiv preprint arXiv:2007.07739},
year = {2021}
}
Comments
10 pages, 5 figures; discussion extended, minor typos/numerical error corrected, conclusion unchanged, matches the version accepted for publication in MNRAS