The last IceCube catalog of High Energy Starting Events (HESE) obtained with a livetime of 1347 days comprises 54 neutrino events equally-distributed between the three families with energies between 25 TeV and few PeVs. Considering the homogeneous flavors distribution (1:1:1) and the spectral features of these neutrinos the IceCube collaboration claims the astrophysical origin of these events with more than 5σ. The spatial distribution of cited events does not show a clear correlation with known astrophysical accelerators leaving opened both the Galactic and the extra-Galactic origin interpretations. Here, we compute the neutrino diffuse emission of our Galaxy on the basis of a recently proposed phenomenological model characterized by radia...
Recently it was noted that different IceCube datasets are not consistent with the same power law sp...
The flux of very high-energy neutrinos produced in our Galaxy by the interaction of accelerated cosm...
International audienceThe characterization of the high energy neutrino flux from interaction of gala...
The last IceCube catalog of High Energy Starting Events (HESE) obtained with a livetime of 1347 days...
We discuss the spectrum of the different components in the astrophysical neutrino flux reaching the ...
The flux, spectrum and angular distribution of the excess neutrino signal detected by IceCube betwee...
International audienceWe use Fermi g -ray and IceCube neutrino data to demonstrate that the IceCube ...
In the last few years, the IceCube experiment has opened a new era in neutrino astronomy, providing ...
We compute the γ-ray and neutrino diffuse emission of the Galaxy on the basis of a recently proposed...
We compute the γ-ray and neutrino diffuse emission of the Galaxy on the basis of a recently proposed...
The Galaxy is a guaranteed source of neutrinos produced by the interaction of cosmic rays (CRs) with...
Context. The Galactic plane is the brightest source of γ rays in the sky. It should also be one of t...
The Ice Cube Neutrino Observatory has been measuring an isotropic astrophysical neutrino flux in mul...
Recently it was noted that different IceCube datasets are not consistent with the same power law sp...
The flux of very high-energy neutrinos produced in our Galaxy by the interaction of accelerated cosm...
International audienceThe characterization of the high energy neutrino flux from interaction of gala...
The last IceCube catalog of High Energy Starting Events (HESE) obtained with a livetime of 1347 days...
We discuss the spectrum of the different components in the astrophysical neutrino flux reaching the ...
The flux, spectrum and angular distribution of the excess neutrino signal detected by IceCube betwee...
International audienceWe use Fermi g -ray and IceCube neutrino data to demonstrate that the IceCube ...
In the last few years, the IceCube experiment has opened a new era in neutrino astronomy, providing ...
We compute the γ-ray and neutrino diffuse emission of the Galaxy on the basis of a recently proposed...
We compute the γ-ray and neutrino diffuse emission of the Galaxy on the basis of a recently proposed...
The Galaxy is a guaranteed source of neutrinos produced by the interaction of cosmic rays (CRs) with...
Context. The Galactic plane is the brightest source of γ rays in the sky. It should also be one of t...
The Ice Cube Neutrino Observatory has been measuring an isotropic astrophysical neutrino flux in mul...
Recently it was noted that different IceCube datasets are not consistent with the same power law sp...
The flux of very high-energy neutrinos produced in our Galaxy by the interaction of accelerated cosm...
International audienceThe characterization of the high energy neutrino flux from interaction of gala...