Probing Neutrinophilic Scalars in Muon Decays
Yongchao Zhang, Zhong Zhang
Abstract
The non-standard self-interactions of neutrinos could be induced by (light) scalars that couple primarily to neutrinos. In this work, we investigate the effects of neutrinophilic scalars ϕ on muon decays at the tree, 1-loop and 2-loop levels, considering both Dirac and Majorana neutrinos. The most phenomenologically interesting processes are the 1-loop corrections of ϕ to the SM muon decay and the four-body muon decays μ- e- νμνμϕ,\, e- νe νe ϕ, both induced by the coupling heμ of ϕ to Majorana neutrinos. The infrared divergences in these processes cancel with each other, yielding an infrared-safe inclusive decay width. The precise GF measurements constrain the coupling |heμ| down to roughly 0.027, with the scalar mass mϕ constrained up to roughly 5.9 TeV. For mϕ O( GeV), the GF measurements are more stringent than other existing laboratory, astrophysical and cosmological constraints. Some other ϕ-induced processes are also possible, which are, however, heavily suppressed by the small couplings, tiny neutrino masses and/or the loop factor.
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