Excited dark matter that is stable in vacuum can decay near Earth into two fast muons, giving neutrino telescopes a nearly background-free signal.
Constraints on leptophilic dark matter from the AMS-02 experiment
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abstract
The annihilation of dark matter particles in the galactic halo of the Milky Way may lead to cosmic ray signatures that can be probed by the AMS-02 experiment, which has measured the composition and fluxes of charged cosmic rays with unprecedented precision. Given the absence of characteristic spectral features in the electron and positron fluxes measured by AMS-02, we derive upper limits on the dark matter annihilation cross section for leptophilic dark matter models. Our limits are based on a new background model that describes all recent measurements of the energy spectra of cosmic ray positrons and electrons. For thermal dark matter relics, we can exclude dark matter masses below about 100 GeV. We include the radiation of electroweak gauge bosons in the dark matter annihilation process and compute the antiproton signal that can be expected within leptophilic dark matter models.
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Novel Signatures of Matter-Induced Dark Matter Decay in Large-Volume Neutrino Telescopes
Excited dark matter that is stable in vacuum can decay near Earth into two fast muons, giving neutrino telescopes a nearly background-free signal.