The minimum width condition for neutrino conversion in matter
arXiv:hep-ph/0002152 · doi:10.1016/S0550-3213(00)00341-2
Abstract
We find that for small vacuum mixing angle and low energies () the width of matter, , needed to have conversion probability should be larger than : . Here is the Fermi constant, is the total energy squared in the center of mass and is the mass of the boson. The absolute minimum is realized for oscillations in a uniform medium with resonance density. For all the other density distributions (monotonically varying density, castle wall profile, etc.) the required width is larger than . The width depends on , and for -resonance channels at we get that is 20 times smaller than the low energy value. We apply the minimum width condition, , to high energy neutrinos in matter as well as in neutrino background. Using this condition, we conclude that the matter effect is negligible for neutrinos propagating in AGN and GRBs environments. Significant conversion can be expected for neutrinos crossing dark matter halos of clusters of galaxies and for neutrinos produced by cosmologically distant sources and propagating in the universe.
35 pages, latex, 5 figures, structure of the paper is slightly changed, typos corrected
Cited by in corpus (32)
- Effects of neutrino mixing on high-energy cosmic neutrino flux
- Pseudo-Dirac Neutrinos, a Challenge for Neutrino Telescopes
- Neutrino Propagation in Matter
- High-energy neutrino conversion and the lepton asymmetry in the universe
- The MSW effect and Matter Effects in Neutrino Oscillations
- Astrophysical neutrinos flavored with Beyond the Standard Model physics
- Two modes of searching for new neutrino interactions at MINOS
- Neutrino propagation in the galactic dark matter halo
- Oscillation effects on high-energy neutrino fluxes from astrophysical hidden sources
- Implications of the Pseudo-Dirac Scenario for Ultra High Energy Neutrinos from GRBs
- Flavor conversion of cosmic neutrinos from hidden jets
- Neutrino flavor ratios as diagnostic of solar WIMP annihilation
- Solar Neutrinos as a Probe of Dark Matter-Neutrino Interactions
- Matter effects in oscillations of neutrinos traveling short distances in matter
- A Model for Pseudo-Dirac Neutrinos: Leptogenesis and Ultra-High Energy Neutrinos
- Cosmic Strings as Emitters of Extremely High Energy Neutrinos
- Sterile neutrinos, dark matter, and resonant effects in ultra high energy regimes
- Resonance refraction and neutrino oscillations
- Astronomy with energy dependent flavour ratios of extragalactic neutrinos
- Neutrino refraction by the cosmic neutrino background
- Axion and Neutrino physics in a -enhanced supersymmetric model
- Ultra-high energy neutrino dispersion in plasma and radiative transition
- The Effective Matter Potential for Highly Relativistic Neutrinos
- The Sun: Light Dark Matter and Sterile Neutrinos
- Nonstandard neutrino properties and the high-energy cosmic neutrino flux
- High Energy Astrophysical Tau Neutrinos: The Expectations
- From ray to spray: augmenting amplitudes and taming fast oscillations in fully numerical neutrino codes
- Neutrino oscillations in matter: from microscopic to macroscopic description
- Linking solar bosonic dark matter halos and active neutrinos
- A Model of Neutrino Anomalies and IceCube data
- The Sterile-Active Neutrino Flavor Model: the Imprint of Dark Matter on the Electron Neutrino Spectra
- Flavor Matters, but Matter Flavors: Matter Effects on Flavor Composition of Astrophysical Neutrinos