# The flavor composition of astrophysical neutrinos after 8 years of   IceCube: an indication of neutron decay scenario?

**Authors:** Andrea Palladino

arXiv: 1902.08630 · 2020-08-10

## TL;DR

This study updates the flavor composition analysis of astrophysical neutrinos using 8 years of IceCube data, suggesting a possible neutron decay origin over the standard pion decay model.

## Contribution

It introduces the use of recent IceCube measurements, a broken power law spectrum, and flux predictions to favor the neutron decay scenario for astrophysical neutrinos.

## Key findings

- Neutrino flavor composition favors neutron decay hypothesis.
- Standard pion decay scenario is disfavored at 2.0σ.
- Damped muons scenario is disfavored at 2.6σ.

## Abstract

In this work we present an updated study of the flavor composition suggested by astrophysical neutrinos observed by IceCube. The main novelties compared to previous studies are the following: 1) we use the most recent measurements, namely 8 years of throughgoing muons and 7.5 years of High Energy Starting Events (HESE); 2) we consider a broken power law spectrum, in order to be consistent with the observations between 30 TeV and few PeV; 3) we use the throughgoing muon flux to predict the number of astrophysical HESE tracks. We show that accounting for the three previous elements, the result favors surprisingly the hypothesis of neutrinos produced by neutron decay, disfavoring the standard picture of neutrinos from pion decay at 2.0$\sigma$ and the damped muons regime at $2.6 \sigma$, once the atmospheric background is considered. Although the conventional scenario is not yet completely ruled out in the statistically and alternative interpretations are also plausible, such as an energy spectrum characterized by a non trivial shape, this intriguing result may suggest new directions for both theoretical interpretation and experimental search strategies.

## Full text

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## Figures

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## References

44 references — full list in the complete paper: https://tomesphere.com/paper/1902.08630/full.md

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Source: https://tomesphere.com/paper/1902.08630