Flavors of Astrophysical Neutrinos with Active-Sterile Mixing
arXiv:2009.01253 · doi:10.1088/1475-7516/2021/07/029
Abstract
We revisit the flavor composition of high-energy astrophysical neutrinos observed at neutrino telescopes. Assuming unitary time evolution of the neutrino flavor states, the flavor composition observable at Earth is related to the initial composition at their sources via oscillation-averaged flavor transitions. In a previous study we derived general bounds on the flavor composition of TeV-PeV astrophysical neutrinos assuming three-flavor unitary mixing. We extend these bounds to the case of active-sterile neutrino mixing. Our bounds are analytical, derived based only on the unitarity of the mixing, and do not require sampling over the values of the unknown active-sterile mixing parameters. These bounds apply to any extended active-sterile neutrino mixing scenario where energy-dependent nonstandard flavor mixing dominates over the standard mixing observed in accelerator, reactor, and atmospheric neutrino oscillations.
10+7 pages, 4 figures, extended version accepted for publication in JCAP
References in corpus (32)
- The Reactor Antineutrino Anomaly
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- IceCube-Gen2: The Window to the Extreme Universe
- Observation and Characterization of a Cosmic Muon Neutrino Flux from the Northern Hemisphere using six years of IceCube data
- Light Sterile Neutrinos: A White Paper
- Statistical Significance of the Gallium Anomaly
- The IceCube high-energy starting event sample: Description and flux characterization with 7.5 years of data
- A tidal disruption event coincident with a high-energy neutrino
- Flavor Composition and Energy Spectrum of Astrophysical Neutrinos
- Flavor Ratio of Astrophysical Neutrinos above 35 TeV in IceCube
- Detection of a particle shower at the Glashow resonance with IceCube
- Limits on sterile neutrino mixing using atmospheric neutrinos in Super-Kamiokande
- Short-Baseline Active-Sterile Neutrino Oscillations?
- 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
- An eV-scale sterile neutrino search using eight years of atmospheric muon neutrino data from the IceCube Neutrino Observatory
- Inferring the flavor of high-energy astrophysical neutrinos at their sources
- The Future of High-Energy Astrophysical Neutrino Flavor Measurements
- Searching for eV-scale sterile neutrinos with eight years of atmospheric neutrinos at the IceCube neutrino telescope
- Glashow resonance as a window into cosmic neutrino sources
- An Analysis of Cosmic Neutrinos: Flavor Composition at Source and Neutrino Mixing Parameters
- Neutrino Mass and New Physics
- Towards Determination of the Initial Flavor Composition of Ultrahigh-energy Neutrino Fluxes with Neutrino Telescopes
- Sterile Neutrinos and Flavor Ratios in IceCube
- Neutrino decoherence from quantum gravitational stochastic perturbations
- Confusing Sterile Neutrinos with Deviation from Tribimaximal Mixing at Neutrino Telescopes
- Aspects of the Flavor Triangle for Cosmic Neutrino Propagation
- Constraining the Violation of Equivalence Principle with IceCube Atmospheric Neutrino Data
- Constraining Astrophysical Neutrino Flavor Composition from Leptonic Unitarity
- Fundamental physics with high-energy cosmic neutrinos today and in the future
- Signatures of sterile neutrino mixing in high-energy cosmic neutrino flux
Cited by in corpus (7)
- Tau Neutrinos in the Next Decade: from GeV to EeV
- The flavor composition of ultra-high-energy cosmic neutrinos: measurement forecasts for in-ice radio-based EeV neutrino telescopes
- Oscillations of sterile neutrinos from dark matter decay eliminates the IceCube-Fermi tension
- Tau depolarization at very high energies for neutrino telescopes
- Two-detector flavor sensitivity to ultra-high-energy cosmic neutrinos
- Final state radiation from high and ultrahigh energy neutrino interactions
- Neutrino Decoherence via Modified Dispersion