High energy cosmic rays experiments inspired by noncommutative quantum field theory
Abstract
Phenomenological analysis of the covariant theta-exact noncommutative (NC) gauge field theory (GFT), inspired by high energy cosmic rays experiments, is performed in the framework of the inelastic neutrino-nucleon scatterings, plasmon and -boson decays into neutrino pair, the Big Bang Nucleosynthesis (BBN) and the Reheating Phase After Inflation (RPAI), respectively. Next we have have found neutrino two-point function and shows a closed form decoupling of the hard ultraviolet (UV) divergent term from softened ultraviolet/infrared (UV/IR) mixing term and from the finite terms as well. For a certain choice of the noncommutative parameter theta which preserves unitarity, problematic UV divergent and UV/IR mixing terms vanish. Non-perturbative modifications of the neutrino dispersion relations are assymptotically independent of the scale of noncommutativity in both the low and high energy limits and may allow superluminal propagation.
Cite
@article{arxiv.1210.5427,
title = {High energy cosmic rays experiments inspired by noncommutative quantum field theory},
author = {Josip Trampetic},
journal= {arXiv preprint arXiv:1210.5427},
year = {2012}
}
Comments
11 pages, 8 figures, Based on the plenary session talks given at the conference: 5th Petrov International Symposium: "High Energy Physics, Cosmology and Gravity", BITP, Kyiv, Ukraine 2012