Modeling of the Tau and Muon Neutrino-induced Optical Cherenkov Signals from Upward-moving Extensive Air Showers
A. L. Cummings, R. Aloisio, J. F. Krizmanic

TL;DR
This paper develops a comprehensive model for optical Cherenkov signals from upward-moving air showers caused by high-energy neutrinos interacting in the Earth, enhancing detection predictions for space-based observatories.
Contribution
It introduces a new, detailed computation scheme for muon neutrino propagation and tau decay channels, improving the accuracy of Cherenkov signal modeling for neutrino detection.
Findings
Muon channels significantly increase detection sensitivity at energies below 10 PeV.
The model predicts enhanced detection capabilities for space-based neutrino observatories.
Upward EAS sensitivity from muon neutrinos surpasses tau neutrino sensitivity below 10 PeV.
Abstract
We present a detailed modeling and computation methodology to determine the optical Cherenkov signals produced by upward-moving extensive air showers (EASs) induced by -leptons and muons, sourced from the interaction of high-energy astrophysical neutrinos interacting in the Earth. Following and extending the physics modeling and Cherenkov signal simulations performed in arxiv:1902.11287, this scheme encompasses a new, state-of-the-art computation of the muon neutrino propagation inside the Earth and the contribution to the -lepton muon decay channel. The modeling takes into account all possible -lepton decay and muon energy loss channels that feed the optical Cherenkov emission, produced by both tau and muon initiated EASs. The EAS modeling uses the electron energy, angular, and lateral distributions in the EAS and their evolution as well as the wavelength dependence…
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