Dark matter (DM) particles are predicted to decay into Standard Model particles which would produce signals of neutrinos, gamma-rays, and other secondary particles. Neutrinos provide an avenue to probe astrophysical sources of DM particles. We review the decay of dark matter into neutrinos over a range of dark matter masses from MeV/c2 to ZeV/c2. We examine the expected contributions to the neutrino flux at current and upcoming neutrino and gamma-ray experiments, such as Hyper-Kamiokande, DUNE, CTA, TAMBO, and IceCube Gen-2. We consider galactic and extragalactic signals of decay processes into neutrino pairs, yielding constraints on the dark matter decay lifetime that ranges from tau ∼ 1.2×10^21 s at 10 MeV/c2 to 1.5x10^29 s at 1 PeV/c2
Experimental developments in neutrino telescopes are drastically improving their ability to constrai...
Dark matter (DM) annihilations in the Galaxy may produce high-energy neutrinos, which can be detecte...
In this thesis, several aspects of the dark sector are explored, using neutrinos and gamma-rays. Dwa...
With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observatory, int...
With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observatory, int...
In this work, we present the results of searches for signatures of dark matter decay or annihilation...
The observed dark matter abundance in the Universe can be explained with non-thermal, heavy dark mat...
The recent results of the EDGES Collaboration indicate that during the era of reionization, the prim...
In the next decades, ultra-high-energy neutrinos in the EeV energy range will be potentially detecte...
Dark Matter constitutes more that 80% of the total amount of matter in the Universe, yet almost noth...
Sterile neutrinos with masses in the keV range are well-motivated extensions to the Standard Model t...
International audienceIn the light of the new IceCube data on the (yet unidentified) astrophysical n...
Large-scale neutrino telescopes will be powerful tools to observe multitude of mysterious phenomena ...
Underground detectors are sensitive to extraterrestrial high energy neutrinos such as those from the...
In the presence of interactions between neutrinos and dark matter (DM), DM can potentially be produc...
Experimental developments in neutrino telescopes are drastically improving their ability to constrai...
Dark matter (DM) annihilations in the Galaxy may produce high-energy neutrinos, which can be detecte...
In this thesis, several aspects of the dark sector are explored, using neutrinos and gamma-rays. Dwa...
With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observatory, int...
With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observatory, int...
In this work, we present the results of searches for signatures of dark matter decay or annihilation...
The observed dark matter abundance in the Universe can be explained with non-thermal, heavy dark mat...
The recent results of the EDGES Collaboration indicate that during the era of reionization, the prim...
In the next decades, ultra-high-energy neutrinos in the EeV energy range will be potentially detecte...
Dark Matter constitutes more that 80% of the total amount of matter in the Universe, yet almost noth...
Sterile neutrinos with masses in the keV range are well-motivated extensions to the Standard Model t...
International audienceIn the light of the new IceCube data on the (yet unidentified) astrophysical n...
Large-scale neutrino telescopes will be powerful tools to observe multitude of mysterious phenomena ...
Underground detectors are sensitive to extraterrestrial high energy neutrinos such as those from the...
In the presence of interactions between neutrinos and dark matter (DM), DM can potentially be produc...
Experimental developments in neutrino telescopes are drastically improving their ability to constrai...
Dark matter (DM) annihilations in the Galaxy may produce high-energy neutrinos, which can be detecte...
In this thesis, several aspects of the dark sector are explored, using neutrinos and gamma-rays. Dwa...