Neutrino astronomy as a probe of physics beyond the Standard Model: decay of sub-MeV - gauge boson dark matter
arXiv:2202.04496 · doi:10.1103/PhysRevD.106.075011
Abstract
The symmetry, the essential component in the seesaw mechanism and leptogenesis, is naturally equipped with a massive gauge boson. If this gauge boson is the dark matter, the scenario consistent with the seesaw mechanism predicts the gauge coupling to be of the order of for masses MeV, dominantly decaying into active neutrinos. We stress and explore the important role of astrophysical neutrinos of energies from keV to MeV in testing the well-motivated - symmetry extension to the Standard Model, which has been missed in the literature to date. Compared to other dark matter models, the neutrino flux in the sub-MeV energy range is a unique prediction in our setup and, once detected, would serve as a smoking gun for the existence of this - gauge boson and its role as the dark matter particle, opening new windows to tackle cosmological and astrophysical conundra.
5 pages, 2 figures; matches version published in PRD
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