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arXiv:2608.01496·v1·High Energy Physics — Phenomenology

Search for active-sterile neutrino transitions using Pierre Auger Observatory data

The Pierre Auger Collaboration: A. Abdul Halim🇦🇺 · P. Abreu🇵🇹 · M. Aglietta🇮🇹 · M. Ahmed🇫🇷 · I. Allekotte🇦🇷 · K. Almeida Cheminant🇳🇱 · R. Aloisio🇮🇹 · J. Alvarez-Muñiz🇪🇸 · A. Ambrosone🇮🇹 · J. Ammerman Yebra🇪🇸 · L. Anchordoqui🇺🇸 · B. Andrada🇦🇷

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Abstract

We investigate the sensitivity of the Pierre Auger Observatory to physics beyond the Standard Model arising from magnetic-moment-induced transitions between active and heavy sterile neutrinos. Such dipole portal interactions can enhance neutrino-nucleon cross sections above a kinematic threshold set by the sterile neutrino mass, leading to observable modifications of neutrino detection rates at ultrahigh energies (UHE). We estimate the impact of these interactions on both down-going and Earth-skimming neutrino detection channels, the contrasting responses of which enable discrimination between an enhanced neutrino flux and a modified interaction cross section. Using the non-observation of UHE neutrino candidates, we derive neutrino-flux-dependent constraints with 90% confidence-level on the transition magnetic moment for sterile neutrino masses in the range 1 TeV-100 TeV. Under the assumed flux scenarios, the resulting flavor-independent limits extend existing bounds into previously unexplored parameter space.

Comments: 11 pages, 4 figures