Why not any tau double bang in Icecube, yet?
arXiv:1512.08794
Abstract
High Energy Neutrino Astronomy has been revealed by a sudden change in the flavor composition around maximal energies since three years of recording in ice km detector. However these discover didn' t led to any clear promised Neutrino Astronomy land yet. No correlation with hard gamma sources was found. Moreover the astrophysical spectra expected at Fermi value, seem to converge to a softer value, also required to avoid any Glashow resonant neutrino signal. We suggest a main solution within a composite flux ruled by prompt atmospheric neutrinos. Nevertheless the recent discover of twentyone crossing muons at hundreds TeVs had shown a first narrow overlapped doublet and a correlated track with a peculiar hard UHECR event clustering pointing to a well known microjet in bynary precession; these first connections hint for a non negligible astrophysical component making neutrino astronomy anyway already more than a hope.
11 pages, 3 figures
References in corpus (12)
- Evidence for Astrophysical Muon Neutrinos from the Northern Sky with IceCube
- Prompt neutrino fluxes from atmospheric charm
- Flavor Ratio of Astrophysical Neutrinos above 35 TeV in IceCube
- Measurement of the Atmospheric flux in IceCube
- Search for Astrophysical Tau Neutrinos in Three Years of IceCube Data
- Measurement of the Atmospheric Spectrum with IceCube
- Searches for Relativistic Magnetic Monopoles in IceCube
- Analysis of the cumulative neutrino flux from Fermi-LAT blazar populations using 3 years of IceCube data
- Cherenkov Flashes and Fluorescence Flares on Telescopes: New lights on UHECR Spectroscopy while unveiling Neutrinos Astronomy
- Crown Detectors to Observe Horizontal and Upward Air-Showers
- Flavor revolution at ICECUBE horizons?
- The meaning of the UHECR Hot Spots: A Light Nuclei Nearby Astronomy