LIGHT PHOTINOS AS DARK MATTER
Abstract
There are good reasons to consider models of low-energy supersymmetry with very light photinos and gluinos. In a wide class of models the lightest -odd, color-singlet state containing a gluino, the , has a mass in the 1-2 GeV range and the slightly lighter photino, , would survive as the relic -odd species. For the light photino masses considered here, previous calculations resulted in an unacceptable photino relic abundance. But we point out that processes other than photino self-annihilation determine the relic abundance when the photino and are close in mass. Including processes, we find that the photino relic abundance is most sensitive to the -to- mass ratio, and within model uncertainties, a critical density in photinos may be obtained for an -to- mass ratio in the range 1.2 to 2.2. We propose photinos in the mass range of 500 MeV to 1.6 GeV as a dark matter candidate, and discuss a strategy to test the hypothesis.
Keywords
Cite
@article{arxiv.astro-ph/9504081,
title = {LIGHT PHOTINOS AS DARK MATTER},
author = {Glennys R. Farrar and Edward W. Kolb},
journal= {arXiv preprint arXiv:astro-ph/9504081},
year = {2016}
}
Comments
uuencoded compressed tar file containing 32 page LaTeX file and eight postscript figures