English

Rotating Fermion-Boson Stars

General Relativity and Quantum Cosmology 2024-10-16 v5

Abstract

Rotating fermion-boson stars are hypothetical celestial objects that consist of both fermionic and bosonic matter interacting exclusively through gravity. Bosonic fields are believed to arise in certain models of particle physics describing dark matter and could accumulate within neutron stars, modifying some of their properties and gravitational wave emission. Fermion-boson stars have been extensively studied in the static non-rotating case, exploring their combined stability and their gravitational radiation in binary mergers. However, stationary rotating configurations were yet to be found and investigated. The presence of a bosonic component could impact the development of the bar-mode instability in differentially rotating neutron stars. Therefore, the study of rotating fermion-boson stars has important implications for astrophysics, as they could provide a new avenue for the detection of gravitational waves. In addition, these objects may shed light on the behavior of matter under extreme conditions, such as those found in the cores of neutron stars, and explain any tension in the determination of the dense-matter equation of state from multi-messenger observations. In this work we study a new consistent method of constructing uniformly rotating fermion-boson stars and we analyse some of their main properties. These objects might offer alternative explanations for current observations populating the lower black-hole mass gap, as the 2.6M2.6 M_\odot compact object involved in GW190814.

Keywords

Cite

@article{arxiv.2403.13052,
  title  = {Rotating Fermion-Boson Stars},
  author = {Jorge Castelo Mourelle and Christoph Adam and Juan Calderón Bustillo and Nicolas Sanchis-Gual},
  journal= {arXiv preprint arXiv:2403.13052},
  year   = {2024}
}

Comments

19 pages, 8 figures. We have added the treatment of static solutions, improved some discussions about the results, and corrected various typos

R2 v1 2026-06-28T15:26:18.468Z