Looking into Analytical Approximations for Three-flavor Neutrino Oscillation Probabilities in Matter
Abstract
Motivated by tremendous progress in neutrino oscillation experiments, we derive a new set of simple and compact formulas for three-flavor neutrino oscillation probabilities in matter of a constant density. A useful definition of the -gauge neutrino mass-squared difference is introduced, where for are the ordinary neutrino mass-squared differences and is a real and positive parameter. Expanding neutrino oscillation probabilities in terms of , we demonstrate that the analytical formulas can be remarkably simplified for , with being the solar mixing angle. As a by-product, the mapping from neutrino oscillation parameters in vacuum to their counterparts in matter is obtained at the order of . Finally, we show that our approximate formulas are not only valid for an arbitrary neutrino energy and any baseline length, but also still maintaining a high level of accuracy.
Keywords
Cite
@article{arxiv.1610.04133,
title = {Looking into Analytical Approximations for Three-flavor Neutrino Oscillation Probabilities in Matter},
author = {Yu-Feng Li and Jue Zhang and Shun Zhou and Jing-yu Zhu},
journal= {arXiv preprint arXiv:1610.04133},
year = {2016}
}
Comments
34 pages, 5 figures; v2: reference added, to appear in JHEP