AbstractNow that PeV neutrinos have been discovered by IceCube, we optimistically entertain the possibility that neutrinos with energy above 100 PeV exist. We evaluate the dependence of event rates of such neutrinos on the neutrino-nucleon cross section at observatories that detect particles, atmospheric fluorescence, or Cherenkov radiation, initiated by neutrino interactions. We consider how (i) a simple scaling of the total standard model neutrino-nucleon cross section, (ii) a new elastic neutral current interaction, and (iii) a new completely inelastic interaction, individually impact event rates
The IceCube Neutrino Observatory detects neutrinos at energies orders of magnitude higher than those...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...
Now that PeV neutrinos have been discovered by IceCube, we optimistically entertain the possibility ...
AbstractNow that PeV neutrinos have been discovered by IceCube, we optimistically entertain the poss...
Although they are best known for studying astrophysical neutrinos, neutrino telescopes like IceCube ...
The ultrahigh energy neutrino cross section is well understood in the standard model for neutrino en...
AbstractWe interpret the PeV shower events observed by the IceCube Collaboration as an s-channel enh...
One of the major goals of neutrino astronomy is to explore the otherwise unknown fluxes and interact...
IceCube, a cubic kilometer neutrino telescope will be capable to probe neutrino-nucleon interactions...
We examine the dependence of event rates at neutrino telescopes on the neutrino-nucleon cross sectio...
In 2013 the cubic-kilometre Cherenkov detector IceCube has detected an astrophysical flux of PeV neut...
AbstractWith the discovery of a high-energy neutrino flux in the 0.1 PeV to PeV range from beyond th...
Neutrino interactions with protons and neutrons probe their deep structure and may reveal new physic...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...
The IceCube Neutrino Observatory detects neutrinos at energies orders of magnitude higher than those...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...
Now that PeV neutrinos have been discovered by IceCube, we optimistically entertain the possibility ...
AbstractNow that PeV neutrinos have been discovered by IceCube, we optimistically entertain the poss...
Although they are best known for studying astrophysical neutrinos, neutrino telescopes like IceCube ...
The ultrahigh energy neutrino cross section is well understood in the standard model for neutrino en...
AbstractWe interpret the PeV shower events observed by the IceCube Collaboration as an s-channel enh...
One of the major goals of neutrino astronomy is to explore the otherwise unknown fluxes and interact...
IceCube, a cubic kilometer neutrino telescope will be capable to probe neutrino-nucleon interactions...
We examine the dependence of event rates at neutrino telescopes on the neutrino-nucleon cross sectio...
In 2013 the cubic-kilometre Cherenkov detector IceCube has detected an astrophysical flux of PeV neut...
AbstractWith the discovery of a high-energy neutrino flux in the 0.1 PeV to PeV range from beyond th...
Neutrino interactions with protons and neutrons probe their deep structure and may reveal new physic...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...
The IceCube Neutrino Observatory detects neutrinos at energies orders of magnitude higher than those...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...
We have searched for extremely high energy neutrinos using data taken with the IceCube detector betw...