Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5494380 | Nuclear Physics B | 2017 | 19 Pages |
Abstract
We examine the hâÎ¼Ï and muon gâ2 in the exact alignment limit of two-Higgs-doublet model. In this case, the couplings of the SM-like Higgs to the SM particles are the same as the Higgs couplings in the SM at the tree level, and the tree-level lepton-flavor-violating coupling hÎ¼Ï is absent. We assume the lepton-flavor-violating Î¼Ï excess observed by CMS to be respectively from the other neutral Higgses, H and A, which almost degenerates with the SM-like Higgs at the 125 GeV. After imposing the relevant theoretical constraints and experimental constraints from the precision electroweak data, B-meson decays, Ï decays and Higgs searches, we find that the muon gâ2 anomaly and Î¼Ï excess favor the small lepton Yukawa coupling and top Yukawa coupling of the non-SM-like Higgs around 125 GeV, and the lepton-flavor-violating coupling is sensitive to another heavy neutral Higgs mass. In addition, if the Î¼Ï excess is from H around 125 GeV, the experimental data of the heavy Higgs decaying into Î¼Ï favor mA>230 GeV for a relatively large Ht¯t coupling.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
Lei Wang, Shuo Yang, Xiao-Fang Han,