Testing decay of astrophysical neutrinos with incomplete information
arXiv:1610.02096 · doi:10.1103/PhysRevD.95.063013
Abstract
Neutrinos mix and have mass differences, so decays from one to another must occur. But how fast? The best direct limits on non-radiative decays, based on solar and atmospheric neutrinos, are weak, s (/eV) or much worse. Greatly improved sensitivity, s (/eV), will eventually be obtained using neutrinos from distant astrophysical sources, but large uncertainties --- in neutrino properties, source properties, and detection aspects --- do not allow this yet. However, there is a way forward now. We show that IceCube diffuse neutrino measurements, supplemented by improvements expected in the near term, can increase sensitivity to s (/eV) for all neutrino mass eigenstates. We provide a roadmap for the necessary analyses and show how to manage the many uncertainties. If limits are set, this would definitively rule out the long-considered possibility that neutrino decay affects solar, atmospheric, or terrestrial neutrino experiments.
11 pages main text, 10 figures, plus technical appendices; improved discussion, improved treatment of nu_tau-initiated showers
References in corpus (36)
- The spectrum of isotropic diffuse gamma-ray emission between 100 MeV and 820 GeV
- Updated fit to three neutrino mixing: status of leptonic CP violation
- Observation and Characterization of a Cosmic Muon Neutrino Flux from the Northern Hemisphere using six years of IceCube data
- Neutrino oscillations refitted
- All-sky search for time-integrated neutrino emission from astrophysical sources with 7 years of IceCube data
- Energy spectra of gamma-rays, electrons and neutrinos produced at interactions of relativistic protons with low energy radiation
- Flavor Composition and Energy Spectrum of Astrophysical Neutrinos
- Flavor Ratio of Astrophysical Neutrinos above 35 TeV in IceCube
- Cosmic neutrino cascades from secret neutrino interactions
- Status of Oscillation plus Decay of Atmospheric and Long-Baseline Neutrinos
- KM3NeT: Towards a km3 Mediterranean Neutrino Telescope
- Neutrino Decays over Cosmological Distances and the Implications for Neutrino Telescopes
- IceCube PeV-EeV Neutrinos and Secret Interactions of Neutrinos
- A Galactic Halo Origin of the Neutrinos Detected by IceCube
- Spectral analysis of the high-energy IceCube neutrinos
- On the flavor composition of the high-energy neutrino events in IceCube
- Flavor Ratios of Astrophysical Neutrinos: Implications for Precision Measurements
- Which is the flavor of cosmic neutrinos seen by IceCube?
- Constraints on neutrino decay lifetime using long-baseline charged and neutral current data
- Testing neutrino flavor mixing plus decay with neutrino telescopes
- Glashow resonance as a window into cosmic neutrino sources
- Neutrino Decays and Neutrino Electron Elastic Scattering in Unparticle Physics
- An Analysis of Cosmic Neutrinos: Flavor Composition at Source and Neutrino Mixing Parameters
- Neutrino flux ratios at neutrino telescopes: The role of uncertainties of neutrino mixing parameters and applications to neutrino decay
- Towards Determination of the Initial Flavor Composition of Ultrahigh-energy Neutrino Fluxes with Neutrino Telescopes
- Neutrino yield from Galactic cosmic rays
- Cosmological neutrino mass detection: The best probe of neutrino lifetime
- Constraints on Unparticle Interactions from Invisible Decays of Z, Quarkonia and Neutrinos
- Prospects for Detecting Galactic Sources of Cosmic Neutrinos with IceCube: An Update
- Neutrino decay as a possible interpretation to the MiniBooNE observation with unparticle scenario
- Aspects of the Flavor Triangle for Cosmic Neutrino Propagation
- Estimating the contribution of Galactic sources to the diffuse neutrino flux
- Constraining Astrophysical Neutrino Flavor Composition from Leptonic Unitarity
- Constraints to a Galactic Component of the Ice Cube cosmic neutrino flux from ANTARES
- Astrophysical tau neutrino detection in kilometer-scale Cherenkov detectors via muonic tau decay
- Neutrino lighthouse powered by Sagittarius A* disk dynamo
Cited by in corpus (11)
- Inferring the flavor of high-energy astrophysical neutrinos at their sources
- Neutrino-nucleus cross sections for W-boson and trident production
- Visible Decay of Astrophysical Neutrinos at IceCube
- W-boson and trident production in TeV--PeV neutrino observatories
- Discovering leptonic forces using non-conserved currents
- On the Impact of Neutrino Decays on the Supernova Neutronization-Burst Flux
- Tau Appearance from High-Energy Neutrino Interactions
- Visible neutrino decay at DUNE
- Trinity's Sensitivity to Isotropic and Point-Source Neutrinos
- Effects of the Violation of the Equivalence Principle at DUNE
- Cosmic Flavor Hexagon for Ultrahigh-energy Neutrinos and Antineutrinos at Neutrino Telescopes