arXiv · 2405.12140
Resonant Neutrino Flavor Conversion in the Atmosphere
Abstract
Neutrinos produced in the atmosphere traverse a column density of air before being detected at neutrino observatories like IceCube or KM3NeT. In this work, we extend the neutrino flavor evolution in the {nuSQuIDS} code accounting for the varying height of neutrino production and the variable air density in the atmosphere. These effects can lead to sizeable spectral distortions in standard neutrino oscillations and are crucial to accurately describe some new physics scenarios. As an example, we study a model of quasi-sterile neutrinos that induce resonant flavor conversions at neutrino energies of ${O}(300)\text{ MeV}$ in matter densities of $1 \text{ g/cm}^3$. In atmospheric air densities, the same resonance is then realized at neutrino energies of ${O}(300- 700)$~GeV. We find that the new resonance can deplete the $\nu_\mu + \overline{\nu}_\mu$ flux at the IceCube Neutrino Observatory by as much as $10\%$ in the direction of the horizon.
Explore related subjects
Keep this discovery
Connor Sponsler, Matheus Hostert, Ivan Martinez-Soler, Carlos A. Argüelles. 2024-05-20. Resonant Neutrino Flavor Conversion in the Atmosphere. https://arxiv.org/abs/2405.12140
Cite the original work for its findings. Save a collection to share your selection of sources.