Kaluza-Klein Dark Matter, Electrons and Gamma Ray Telescopes
Abstract
Kaluza-Klein dark matter particles can annihilate efficiently into electron-positron pairs, providing a discrete feature (a sharp edge) in the cosmic spectrum at an energy equal to the particle's mass (typically several hundred GeV to one TeV). Although this feature is probably beyond the reach of satellite or balloon-based cosmic ray experiments (those that distinguish the charge and mass of the primary particle), gamma ray telescopes may provide an alternative detection method. Designed to observe very high-energy gamma-rays, ACTs also observe the diffuse flux of electron-induced electromagnetic showers. The GLAST satellite, designed for gamma ray astronomy, will also observe any high energy showers (several hundred GeV and above) in its calorimeter. We show that high-significance detections of an electron-positron feature from Kaluza-Klein dark matter annihilations are possible with GLAST, and also with ACTs such as HESS, VERITAS or MAGIC.
Keywords
Cite
@article{arxiv.hep-ph/0411053,
title = {Kaluza-Klein Dark Matter, Electrons and Gamma Ray Telescopes},
author = {Edward A. Baltz and Dan Hooper},
journal= {arXiv preprint arXiv:hep-ph/0411053},
year = {2011}
}
Comments
10 pages, 2 figures