Boson Stars: Alternatives to primordial black holes?
Abstract
The present surge for the astrophysical relevance of boson stars stems from the speculative possibility that these compact objects could provide a considerable fraction of the non-baryonic part of dark matter within the halo of galaxies. For a very light `universal' axion of effective string models, their total gravitational mass will be in the most likely range of \sim 0.5 M_\odot of MACHOs. According to this framework, gravitational microlensing is indirectly ``weighing" the axion mass, resulting in \sim 10^{-10} eV/c^2. This conclusion is not changing much, if we use a dilaton type self-interaction for the bosons. Moreover, we review their formation, rotation and stability as likely candidates of astrophysical importance.
Keywords
Cite
@article{arxiv.gr-qc/0001061,
title = {Boson Stars: Alternatives to primordial black holes?},
author = {Eckehard W. Mielke and Franz E. Schunck},
journal= {arXiv preprint arXiv:gr-qc/0001061},
year = {2009}
}
Comments
14 pages, uses REVTeX, 1 postscript figure