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Main Authors: Muñoz-Ovalle, Alejandro, Vogl, Stefan
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2510.02450
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author Muñoz-Ovalle, Alejandro
Vogl, Stefan
author_facet Muñoz-Ovalle, Alejandro
Vogl, Stefan
contents In 2023, KM3NeT observed the highest energy neutrino seen to date. The most probable estimate places the energy of the neutrino at an extreme value of 220 PeV, and energies up to 2.6 EeV are contained in the $90\%$ probability interval. Even though the source of the signal cannot be ascertained with the available data, this observation already opens unique possibilities to test new physics. Here, we study the implications for the transition magnetic dipole portal connecting active and sterile neutrinos. We remain agnostic regarding the origin of the neutrino and focus on local effects. Concretely, we study the impact of efficient active--sterile transitions on the energy degradation experienced by the neutrino along its path to the detector at Earth. We find that the ultra-high-energy neutrino event does not add relevant information for sterile neutrinos with masses less than a TeV. However, the observation becomes important at higher masses and can provide the leading constraint in that regime.
format Preprint
id arxiv_https___arxiv_org_abs_2510_02450
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Neutrino transition dipole moments in light of the KM3NeT event
Muñoz-Ovalle, Alejandro
Vogl, Stefan
High Energy Physics - Phenomenology
In 2023, KM3NeT observed the highest energy neutrino seen to date. The most probable estimate places the energy of the neutrino at an extreme value of 220 PeV, and energies up to 2.6 EeV are contained in the $90\%$ probability interval. Even though the source of the signal cannot be ascertained with the available data, this observation already opens unique possibilities to test new physics. Here, we study the implications for the transition magnetic dipole portal connecting active and sterile neutrinos. We remain agnostic regarding the origin of the neutrino and focus on local effects. Concretely, we study the impact of efficient active--sterile transitions on the energy degradation experienced by the neutrino along its path to the detector at Earth. We find that the ultra-high-energy neutrino event does not add relevant information for sterile neutrinos with masses less than a TeV. However, the observation becomes important at higher masses and can provide the leading constraint in that regime.
title Neutrino transition dipole moments in light of the KM3NeT event
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2510.02450