arXiv:astro-ph/0002089·v5·Astrophysics
Relic Neutrinos and Z-Resonance Mechanism for Highest-Energy Cosmic Rays
James L. Crooks🇺🇸 · James O. Dunn🇺🇸 · Paul H. Frampton🇺🇸
Abstract
The origin of the highest-energy cosmic rays remains elusive. The decay of a superheavy particle (X) into an ultra-energetic neutrino which scatters from a relic (anti-)neutrino at the Z-resonance has attractive features. Given the necessary X mass of GeV, the required lifetime, y, renders model-building a serious challenge but three logical possibilities are considered: (i) X is a Higgs scalar in SU(15) belonging to high-rank representation, leading to {\it power}-enhanced lifetime; (ii) a global X quantum number has {\it exponentially}-suppressed symmetry-breaking by instantons; and (iii) with additional space dimension(s) localisation of X within the real-world brane leads to {\it gaussian} decay suppression, the most efficient of the suppression mechanisms considered.
Comments: 10 page LaTeX and one postscript figure. References added