Light Hidden Fermionic Dark Matter in Neutrino Experiments
Abstract
We consider, in a model-independent framework, the potential for observing dark matter in neutrino detectors through the interaction , where is a dark fermion. Operators of dimension six or less are considered, and constraints are placed on their coefficients using the dark matter lifetime and its decays to states which include rays or pairs. After these constraints are applied, there remains one operator which can possibly contribute to in neutrino detectors at an observable level. We then consider the results from the Super-Kamiokande relic supernova neutrino search and find that Super-K can probe the new physics scale of this interaction up to .
Cite
@article{arxiv.0910.3177,
title = {Light Hidden Fermionic Dark Matter in Neutrino Experiments},
author = {Jennifer Kile},
journal= {arXiv preprint arXiv:0910.3177},
year = {2009}
}
Comments
5, pages, 1 figure. To be published in the proceedings of DPF-2009, Detroit, MI, July 2009, eConf C090726