The 17 MeV Anomaly in Beryllium Decays and Portal to Dark Matter
arXiv:1609.07198 · doi:10.1142/S0217751X17501780
Abstract
The experiment of Krasznahorkay \textit{et al} observed the transition of a excited state to its ground state and accompanied by an emission of pair with 17 MeV invariant mass. This 6.8 anomaly can be fitted by a new light gauge boson. We consider the new particle as a gauge boson, , which plays as a portal linking dark sector and visible sector. In particular, we study the new gauge symmetry as a hidden or non-hidden group separately. The generic hidden model, referred to as dark model, is excluded by imposing various experimental constraints. On the other hand, a non-hidden is allowed due to additional interactions between and Standard Model fermions. We also study the implication of the dark matter direct search on such a scenario. We found the search for the DM-nucleon scattering excludes the range of DM mass above 500 MeV. However, the DM-electron scattering for MeV-scale DM is still allowed by current constraints for non-hidden models. It is possible to test the underlying portal model by the future Si and Ge detectors with threshold charges.
13 pages, 3 figures, published version
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