Heavy neutral leptons below the kaon mass at hodoscopic detectors
arXiv:2109.03831 · doi:10.1103/PhysRevD.105.095006
Abstract
Heavy neutral leptons () below the kaon mass are severely constrained by cosmology and lab-based searches for their decays in flight. If interacts via an additional force, decays are enhanced and cosmological limits can be avoided. We show that the T2K and MicroBooNE neutrino experiments provide the best limits on the mixing of with muon-neutrinos, outperforming past-generation experiments, previously thought to dominate. We constrain models with electromagnetically-decaying and long-lived , such as in a transition-magnetic-moment portal and in a leptophilic axion-like particle portal, invoked to explain the MiniBooNE excess. By considering these models as representative examples, our results show that explanations of the MiniBooNE excess that involve pairs from long-lived particles are in tension with T2K, PS191, and MicroBooNE data. Similarly, these searches also constrain MiniBooNE explanations based on single photons due to the associated decay mode via a virtual photon.
15 pages, 11 figures Several typos were fixed, and references were added. The work has been expanded to discuss a leptophilic axion-like particle portal model that could explain the MiniBooNE excess
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