International audienceIn response to a reported increase in the total neutrino flux in the Homestake experiment in coincidence with solar flares at the end of the eighties, solar neutrino detectors have searched for solar flare signals. Solar flares convert magnetic energy into thermal energy of plasma and kinetic energy of charged particles such as protons. As a consequence of magnetic reconnection, protons are injected downwards from the coronal acceleration region and can interact with dense plasma in the lower solar atmosphere, producing mesons that will subsequently decay into gamma rays and neutrinos at O(MeV-GeV) energies.The main motivation to search for solar flare neutrinos comes from their hadronic origin. Asinherent products of ...
The IceCube Neutrino Observatory, located in the glacial ice beneath the geographic South Pole, surv...
Seckel, DavidThe origin and acceleration process for cosmic rays more energetic than $10^{15}$~eV is...
The Fermi Lab Liquid ARgon experiment, FLARE, a huge neutrino argon-liquid project detector of 50 kt...
International audienceIn response to a reported increase in the total neutrino flux in the Homestake...
Solar flares convert magnetic energy into thermal and nonthermal plasma energy, the latter implying ...
Since the end of the eighties and in response to a reported increase in the total neutrino flux in t...
Intense solar flares originated in sun spots produce high energy particles (protons, $\alpha$) well ...
International audienceNeutrinos associated with solar flares (solar-flare neutrinos) provide informa...
Cosmic rays striking the solar atmosphere are expected to produce particle showers, which will resul...
Since the discovery of cosmic rays it has been one of the major research goals to identify the sourc...
Cosmic-rays interacting with nucleons in the solar atmosphere produce a cascade of particles that gi...
Cosmic ray interactions with the solar atmosphere are expected to generate energetic neutrinos that ...
To foresee a solar flare neutrino signal we infer its upper and lower bound. The upper bound was der...
The IceCube neutrino observatory is a 1 km$^3$ detector deployed in the ice at the Sou...
The IceCube Neutrino Observatory, located in the glacial ice beneath the geographic South Pole, surv...
Seckel, DavidThe origin and acceleration process for cosmic rays more energetic than $10^{15}$~eV is...
The Fermi Lab Liquid ARgon experiment, FLARE, a huge neutrino argon-liquid project detector of 50 kt...
International audienceIn response to a reported increase in the total neutrino flux in the Homestake...
Solar flares convert magnetic energy into thermal and nonthermal plasma energy, the latter implying ...
Since the end of the eighties and in response to a reported increase in the total neutrino flux in t...
Intense solar flares originated in sun spots produce high energy particles (protons, $\alpha$) well ...
International audienceNeutrinos associated with solar flares (solar-flare neutrinos) provide informa...
Cosmic rays striking the solar atmosphere are expected to produce particle showers, which will resul...
Since the discovery of cosmic rays it has been one of the major research goals to identify the sourc...
Cosmic-rays interacting with nucleons in the solar atmosphere produce a cascade of particles that gi...
Cosmic ray interactions with the solar atmosphere are expected to generate energetic neutrinos that ...
To foresee a solar flare neutrino signal we infer its upper and lower bound. The upper bound was der...
The IceCube neutrino observatory is a 1 km$^3$ detector deployed in the ice at the Sou...
The IceCube Neutrino Observatory, located in the glacial ice beneath the geographic South Pole, surv...
Seckel, DavidThe origin and acceleration process for cosmic rays more energetic than $10^{15}$~eV is...
The Fermi Lab Liquid ARgon experiment, FLARE, a huge neutrino argon-liquid project detector of 50 kt...