The Future of High-Energy Astrophysical Neutrino Flavor Measurements
arXiv:2012.12893 · doi:10.1088/1475-7516/2021/04/054
Abstract
We critically examine the ability of future neutrino telescopes, including Baikal-GVD, KM3NeT, P-ONE, TAMBO, and IceCube-Gen2, to determine the flavor composition of high-energy astrophysical neutrinos, ie, the relative number of , , and , in light of improving measurements of the neutrino mixing parameters. Starting in 2020, we show how measurements by JUNO, DUNE, and Hyper-Kamiokande will affect our ability to determine the regions of flavor composition at Earth that are allowed by neutrino oscillations under different assumptions of the flavor composition that is emitted by the astrophysical sources. From 2020 to 2040, the error on inferring the flavor composition at the source will improve from to less than . By 2040, under the assumption that pion decay is the principal production mechanism of high-energy astrophysical neutrinos, a sub-dominant mechanism could be constrained to contribute less than 20\% of the flux at 99.7\% credibility. These conclusions are robust in the nonstandard scenario where neutrino mixing is non-unitary, a scenario that is the target of next-generation experiments, in particular the IceCube-Upgrade. Finally, to illustrate the improvement in using flavor composition to test beyond-the-Standard-Model physics, we examine the possibility of neutrino decay and find that, by 2040, combined neutrino telescope measurements will be able to limit the decay rate of the heavier neutrinos to below ~s, at 95\% credibility.
27 pages, 13 figures, 3 tables. Happy holidays, jié rì kuài lè, joyeuses ftes, felices fiestas
References in corpus (44)
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- 2020 Global reassessment of the neutrino oscillation picture
- Measurement of the solar neutrino capture rate with gallium metal. III: Results for the 2002--2007 data-taking period
- Updated fit to three neutrino mixing: exploring the accelerator-reactor complementarity
- 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
- Solar neutrino measurements in Super-Kamiokande-II
- A new Generation of Standard Solar Models
- Improved Measurement of Electron Antineutrino Disappearance at Daya Bay
- Unitarity of the Leptonic Mixing Matrix
- A tidal disruption event coincident with a high-energy neutrino
- Flavor Composition and Energy Spectrum of Astrophysical Neutrinos
- The Pacific Ocean Neutrino Experiment
- Flavor Ratio of Astrophysical Neutrinos above 35 TeV in IceCube
- Determining neutrino oscillation parameters from atmospheric muon neutrino disappearance with three years of IceCube DeepCore data
- Neutrino Decays over Cosmological Distances and the Implications for Neutrino Telescopes
- Improved Measurement of the Reactor Antineutrino Flux and Spectrum at Daya Bay
- Testing decay of astrophysical neutrinos with incomplete information
- 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
- Energy dependent neutrino flavor ratios from cosmic accelerators on the Hillas plot
- Which is the flavor of cosmic neutrinos seen by IceCube?
- Inferring the flavor of high-energy astrophysical neutrinos at their sources
- Testing neutrino flavor mixing plus decay with neutrino telescopes
- Implications of Leptonic Unitarity Violation at Neutrino Telescopes
- Back to (Mass-)Square(d) One: The Neutrino Mass Ordering in Light of Recent Data
- 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
- Invisible neutrino decay in precision cosmology
- High energy neutrino yields from astrophysical sources I: Weakly magnetized sources
- Current and Future Neutrino Oscillation Constraints on Leptonic Unitarity
- Visible Decay of Astrophysical Neutrinos at IceCube
- Oscillation effects on high-energy neutrino fluxes from astrophysical hidden sources
- Strengthening the bound on the mass of the lightest neutrino with terrestrial and cosmological experiments
- Sterile Neutrinos and Flavor Ratios in IceCube
- Astrophysical Neutrino Production Diagnostics with the Glashow Resonance
- Leptonic Unitarity Triangles
- Global oscillation data analysis on the mixing without unitarity
- Constraining Astrophysical Neutrino Flavor Composition from Leptonic Unitarity
- Using High-Energy Neutrinos As Cosmic Magnetometers
- Cosmic Neutrino Flavor Ratios with Broken Symmetry
- Neutrino telescopes and high-energy cosmic neutrinos
- T2K measurements of muon neutrino and antineutrino disappearance using protons on target
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- Neutrino Self-Interactions: A White Paper
- Snowmass White Paper: Beyond the Standard Model effects on Neutrino Flavor
- Probing Secret Interactions of Astrophysical Neutrinos in the High-Statistics Era
- Tau Neutrinos in the Next Decade: from GeV to EeV
- Constraints on the models of the origin of high-energy astrophysical neutrinos
- Search for Quantum Gravity Using Astrophysical Neutrino Flavour with IceCube
- DUNE atmospheric neutrinos: Earth Tomography
- Probing New Physics at Future Tau Neutrino Telescopes
- Design and Initial Performance of the Prototype for the BEACON Instrument for Detection of Ultrahigh Energy Particles
- Unified thermal model for photohadronic neutrino production in astrophysical sources
- Probing Pseudo-Dirac Neutrinos with Astrophysical Sources at IceCube
- Neutrino interactions with ultralight axion-like dark matter
- Neutrino propagation in the Earth and emerging charged leptons with
- Flavors of Astrophysical Neutrinos with Active-Sterile Mixing
- Energy-Dependent Neutrino Mixing Parameters at Oscillation Experiments
- Tau Appearance from High-Energy Neutrino Interactions
- The flavor composition of ultra-high-energy cosmic neutrinos: measurement forecasts for in-ice radio-based EeV neutrino telescopes
- Signature of Collapsars as Sources for High-energy Neutrinos and -process Nuclei
- How Broad is a Neutrino?
- Tau depolarization at very high energies for neutrino telescopes
- Two-detector flavor sensitivity to ultra-high-energy cosmic neutrinos
- Detecting High-Energy Neutrinos from Galactic Supernovae with ATLAS
- A plethora of long-range neutrino interactions probed by DUNE and T2HK
- Inferring astrophysical neutrino sources from the Glashow resonance
- Energy-dependent flavour ratios in neutrino telescopes from charm
- Constraining the pseudo-Dirac nature of neutrinos using astrophysical neutrino flavor data
- Magnetar-powered Neutrinos and Magnetic Moment Signatures at IceCube
- Effects of Annihilation with Low-Energy Neutrinos on High-Energy Neutrinos from Binary Neutron Star Mergers and Rare Core-Collapse Supernovae
- Improved precision on 2-3 oscillation parameters using the synergy between DUNE and T2HK
- Resonant leptogenesis in inverse see-saw framework with modular symmetry
- Helicity-changing Decays of Cosmological Relic Neutrinos
- Flavor Matters, but Matter Flavors: Matter Effects on Flavor Composition of Astrophysical Neutrinos
- No Flavor Anisotropy in the High-Energy Neutrino Sky Upholds Lorentz Invariance
- Lorentz symmetry and high-energy neutrino astronomy
- Spread Complexity of High Energy Neutrino Propagation over Astrophysical Distances
- Neutrino Mass Hierarchy and Axion--Lepton Couplings in a Minimal Flavored KSVZ Model