Black Holes from Fermi Ball Collapse
Abstract
Fermi balls are non-topological solitons that can naturally form in an early universe containing a dark sector with heavy fermions and an attractive interaction mediated by a light scalar field. We compute the Fermi ball mass and radius scaling relations when the potential of the scalar field has a non-negligible quartic coupling . The resulting Fermi balls reach `saturation' very rapidly, even when their radius is much smaller than the effective Yukawa force range. These objects can therefore grow by mergers or by accretion of ambient dark fermions, until they become so dense that they fall within their Schwarzschild radius and collapse to black holes. This setup, therefore, provides an example of a rather natural and economical dark sector scenario for the formation of primordial black holes.
Keywords
Cite
@article{arxiv.2411.17074,
title = {Black Holes from Fermi Ball Collapse},
author = {Yifan Lu and Zachary S. C. Picker and Stefano Profumo and Alexander Kusenko},
journal= {arXiv preprint arXiv:2411.17074},
year = {2025}
}
Comments
13 pages, 3 figures