Connect the Lorentz Violation to the Glashow Resonance Event
arXiv:2211.05478 · doi:10.1142/S0217732323500293
Abstract
The recent reported Glashow resonance (GR) event shows a promising prospect in the test of the Lorentz violation (LV) by the high-energy astrophysical neutrinos (HANs) around the resonant energy. However, since the production source and the energy spectra of HANs are uncertain at present, moderate LV effects may be concealed at the TeV energy-scale. In this paper, we propose the LV Hamiltonian of a special texture which can lead to the decoupling of (). On the base of the decoupling, a noticeable damping of the GR event rate is shown for the HANs from the source dominated by , irrespective of the energy spectra of the HANs at Earth. Accordingly, the observation of GR events may bring stringent constraints on the LV and the production mechanism of HANs.
13pages, 3figures
References in corpus (16)
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- The IceCube high-energy starting event sample: Description and flux characterization with 7.5 years of data
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- Improved Characterization of the Astrophysical Muon-Neutrino Flux with 9.5 Years of IceCube Data
- Detection of a particle shower at the Glashow resonance with IceCube
- Cosmic neutrino cascades from secret neutrino interactions
- Blazar flares powered by plasmoids in relativistic reconnection
- Neutrino Decays over Cosmological Distances and the Implications for Neutrino Telescopes
- IceCube PeV-EeV Neutrinos and Secret Interactions of Neutrinos
- Testing decay of astrophysical neutrinos with incomplete information
- Test of Lorentz invariance with atmospheric neutrinos
- Glashow resonance as a window into cosmic neutrino sources
- Implications of Leptonic Unitarity Violation at Neutrino Telescopes
- Neutrino flux ratios at neutrino telescopes: The role of uncertainties of neutrino mixing parameters and applications to neutrino decay
- Particle Injection and Nonthermal Particle Acceleration in Relativistic Magnetic Reconnection
- Sterile Neutrinos and Flavor Ratios in IceCube