The Appearance of Tau Neutrinos from a Gamma Ray Burst
arXiv:astro-ph/0205451 · doi:10.1016/S0370-2693(02)02214-1
Abstract
The muon neutrinos from the Gamma Ray Bursts(GRBs) during their propagation oscillate to tau neutrinos. The tau neutrinos can be identified by the appearance of tau leptons which decay to muons below the detector. We examine the prospect of detecting these tau neutrinos from individual GRBs in a large area muon detector. We investigate for what range of values of the physical parameters of the GRBs such as Lorentz factor, redshift(distance from the observer) and total energy emitted in neutrino emissions the appearance of tau neutrinos from individual GRBs will be observable in a ground based muon detector of km^2 area. We find it will be possible to detect tau neutrino signals from a single GRB in a ground based muon detector of km^2 area above a muon threshold energy 30 PeV and at a zenith angle 180 degree if the energy emitted in neutrinos is 10^53 erg and its redshift is below 0.01 or if the energy emitted in neutrinos by the GRB is 10^54 erg and its redshift is below 0.03.
11 pages, 3 figures; Version to appear in Physics Letters B
Cited by in corpus (7)
- Measuring Flavor Ratios of High-Energy Astrophysical Neutrinos
- Neutrino Detection with Inclined Air Showers
- Probing deviations from tri-bimaximal mixing through ultra high energy neutrino signals
- A study of the appearance of tau neutrinos from a gamma ray burst by detecting their horizontal electromagnetic showers
- Probing a Four Flavour vis-a-vis Three Flavour Neutrino Mixing for UHE Neutrino Signals at a 1 Detector
- Unparticle Decay of Neutrinos and its Possible Signatures at a Detector for (3+1) Flavour Framework
- Probing Pseudo-Dirac Neutrino through Detection of Neutrino Induced Muons from GRB Neutrinos