No significant GeV neutrino excess was found from five bright gamma-ray solar flares, yielding the first IceCube upper limits on solar flare neutrino emission.
On the Study of Solar Flares with Neutrino Observatories
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abstract
Since the end of the eighties, in response to a reported increase of the total neutrino flux in the Homestake experiment in coincidence with solar flares, neutrino detectors have searched for signals of neutrinos associated with solar flare activity. Protons which are accelerated by the magnetic structures of such flares may collide with the solar atmosphere, producing mesons which subsequently decay, resulting in neutrinos at O(MeV-GeV) energies. The study of such neutrinos would provide a new window on the underlying physics of the acceleration process. The sensitivity to solar flares of the IceCube Neutrino Observatory, located at the geographical South Pole, is currently under study. We introduce a new approach for a time profile analysis. This is based on a stacking method of selected solar flares which are likely to be connected with pion production. An initial approach towards a neutrino search using the current IceCube experiment as well as first efforts to improve the detection efficiency in the future are presented.
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First search for GeV neutrinos from bright gamma-ray solar flares using the IceCube Neutrino Observatory
No significant GeV neutrino excess was found from five bright gamma-ray solar flares, yielding the first IceCube upper limits on solar flare neutrino emission.