Propagation of Superluminal PeV IceCube Neutrinos: A High Energy Spectral Cutoff or New Constraints on Lorentz Invariance Violation
arXiv:1404.7025 · doi:10.1103/PhysRevD.90.043012
Abstract
The IceCube observation of cosmic neutrinos with TeV, most of which are likely of extragalactic origin, allows one to severely constrain Lorentz invariance violation (LIV) in the neutrino sector, allowing for the possible existence of superluminal neutrinos. The subsequent neutrino energy loss by vacuum pair emission (VPE) is strongly dependent on the strength of LIV. In this paper we explore the physics and cosmology of superluminal neutrino propagation. We consider a conservative scenario for the redshift distribution of neutrino sources. Then by propagating a generic neutrino spectrum, using Monte Carlo techniques to take account of energy losses from both VPE and redshifting, we obtain the best present constraints on LIV parameters involving neutrinos. We find that . Taking , we then obtain an upper limit on the superluminal velocity fraction for neutrinos alone of . Interestingly, by taking , we obtain a cutoff in the predicted neutrino spectrum above 2 PeV that is consistent with the lack of observed neutrinos at those energies, and particularly at the Glashow resonance energy of 6.3 PeV. Thus, such a cutoff could be the result of neutrinos being slightly superluminal, with being .
4 pages, 3 eps figures, corrected Fig. 3, added discussion and added/updated references. conclusions unchanged
References in corpus (2)
Cited by in corpus (21)
- IceCube-Gen2: The Window to the Extreme Universe
- Design and Sensitivity of the Radio Neutrino Observatory in Greenland (RNO-G)
- Spectral analysis of the high-energy IceCube neutrinos
- Searching for Traces of Planck-Scale Physics with High Energy Neutrinos
- Snowmass White Paper: Beyond the Standard Model effects on Neutrino Flavor
- Tau Neutrinos in the Next Decade: from GeV to EeV
- White Paper and Roadmap for Quantum Gravity Phenomenology in the Multi-Messenger Era
- Probing decaying heavy dark matter with the 4-year IceCube HESE data
- Estimating the contribution of Galactic sources to the diffuse neutrino flux
- Testing Lorentz and CPT invariance with neutrinos
- Phenomenological Effects of CPT and Lorentz Invariance Violation in Particle and Astroparticle Physics
- Improved Constraints on Anisotropic Birefringent Lorentz Invariance and CPT Violation from Broadband Optical Polarimetry of High Redshift Galaxies
- Constraints on Lorentz-invariance violation in the neutrino sector from the ultrahigh-energy event KM3-230213A
- Calculation of the Decay Rate of Tachyonic Neutrinos against Charged-Lepton-Pair and Neutrino-Pair Cerenkov Radiation
- Squeezing the Parameter Space for Lorentz Violation in the Neutrino Sector by Additional Decay Channels
- Lorentz Breaking and SU(2)_L x U(1)_Y Gauge Invariance for Neutrino Decays
- Multimessenger Potential of the Radio Neutrino Observatory in Greenland
- Lorentz symmetry and high-energy neutrino astronomy
- Recent advances on multimessenger astrophysics: Centaurus A, GW 170817, and KM3-230213A
- Dynamics of Neutrino Wave Packet in the Tachyon-like Dirac Equation
- Neutrino Pair Cerenkov Radiation for Tachyonic Neutrinos