Muon conversion to electron in nuclei in Minimal R-symmetric Supersymmetric Standard Model
Abstract
We analyze the lepton flavor violating process μ-e conversion in the framework of the minimal R-symmetric supersymmetric standard model. The theoretical predictions are determined by considering the experimental constraint on parameter δ12 from the lepton flavor violating decay μ→ e γ. The numerical results show that γ penguins and Z penguins dominate the predictions on CR(μ-e,Nucleus), and the contributions from Higgs penguins and box diagrams are insignificant. The theoretical predictions on conversion rate CR(μ-e,Nucleus) in a Al or Ti target can be enhanced close to the future experimental sensitivities and are very promising to be observed in near future experiment.
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