Do neutrinos bend? Consequences of an ultralight gauge field as dark matter
arXiv:2407.18300 · doi:10.1016/j.dark.2024.101659
Abstract
An ultralight gauge boson could address the missing cosmic dark matter, with its transverse modes contributing to a relevant component of the galactic halo today. We show that, in the presence of a coupling between the gauge boson and neutrinos, these transverse modes affect the propagation of neutrinos in the galactic core. Neutrinos emitted from galactic or extra-galactic supernovae could be delayed by s for the gauge boson masses eV and the coupling with the neutrino . While we do not focus on a specific formation mechanism for the gauge boson as the dark matter in the early Universe, we comment on some possible realizations. We discuss model-dependent current bounds on the gauge coupling from fifth-force experiments, as well as future explorations involving supernovae neutrinos. We consider the concrete case of the DUNE facility, where the coupling can be tested down to for neutrinos coming from a supernova event at a distance kpc from Earth.
33 pages, 1 figure, matching the journal version. COST Actions CA21106 and CA21136