Can Dark Matter be a Scalar Field?
Abstract
In this paper we study a real scalar field as a possible candidate to explain the dark matter in the universe. In the context of a free scalar field with quadratic potential, we have used Union 2.1 SN Ia observational data jointly with a Planck prior over the dark matter density parameter to set a lower limit on the dark matter mass as eV (). For the recent value of the Hubble constant indicated by the Hubble Space Telescope, namely km sMpc, this leads to eV at 99.7\% c.l. Such value is much smaller than eV previously estimated for some models. Nevertheless, it is still in agreement with them once we have not found evidences for a upper limit on the scalar field dark matter mass from SN Ia analysis. In practice, it confirms free real scalar field as a viable candidate for dark matter in agreement with previous studies in the context of density perturbations, which include scalar field self interaction.
Keywords
Cite
@article{arxiv.1504.04037,
title = {Can Dark Matter be a Scalar Field?},
author = {J. F. Jesus and S. H. Pereira and J. L. G. Malatrasi and F. Andrade-Oliveira},
journal= {arXiv preprint arXiv:1504.04037},
year = {2016}
}
Comments
14 pages, 6 figures. Major revision after proof-reading, changed 2 figures for better visualization, corrected 1 equation and acknowledgments