Accumulation and annihilation of weakly interacting massive particles (WIMPs) in the earth and the sun may be observed by the resulting neutrino signal. We demonstrate that, for certain parts of the SUSY parameter space, present and future neutrino telescopes can expect a higher rate of events due to tau-neutrinos than of events due to muon-neutrinos. We show how ν τ ↔ ν μ oscillations, and in the case of the sun also scattering, absorption and regeneration, modify the signal expectation. We find that most currently proposed neutralino models predict equal or increased muon fluxes if ν τ ↔ ν μ oscillations are included
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
We study the fluxes of neutrinos from annihilations of dark matter particles in the Sun and the Eart...
Accumulation and annihilation of weakly interacting massive particles (WIMPs) in the earth and the s...
Accumulation and annihilation of weakly interacting massive particles (WIMPs) in the Earth and the s...
Weakly interacting massive particles (WIMPs) are one of the main candidates for making up the dark m...
The lightest neutralino, as the dark matter candidate, can be gravitationally captured by the Sun. I...
We present a detailed analysis of the neutrino-induced muon signals coming from neutralino pair-anni...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
Recently, a new Solar System population of weakly interacting massive particle (WIMP) dark matter ha...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
We study the fluxes of neutrinos from annihilations of dark matter particles in the Sun and the Eart...
Accumulation and annihilation of weakly interacting massive particles (WIMPs) in the earth and the s...
Accumulation and annihilation of weakly interacting massive particles (WIMPs) in the Earth and the s...
Weakly interacting massive particles (WIMPs) are one of the main candidates for making up the dark m...
The lightest neutralino, as the dark matter candidate, can be gravitationally captured by the Sun. I...
We present a detailed analysis of the neutrino-induced muon signals coming from neutralino pair-anni...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
Recently, a new Solar System population of weakly interacting massive particle (WIMP) dark matter ha...
International audienceNeutrinos are invisible, but their interactions with matter and their leptons ...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
The evidence of a new population of diffuse high-energy neutrinos, obtained by IceCube, has opened a...
We study the fluxes of neutrinos from annihilations of dark matter particles in the Sun and the Eart...