A light pseudoscalar of 2HDM confronted with muon g-2 and experimental constraints

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Abstract

Abstract: A light pseudoscalar of the lepton-specific 2HDM can enhance the muon g-2, but suffer from various constraints easily, such as the 125.5 GeV Higgs signals, non-observation of additional Higgs at the collider and even B s → μ + μ −. In this paper, we take the light CP-even Higgs as the 125.5 GeV Higgs, and examine the implications of those observables on a pseudoscalar with the mass below the half of 125.5 GeV. Also the other relevant theoretical and experimental constraints are considered. We find that the pseudoscalar can be allowed to be as low as 10 GeV, but the corresponding tan β, sin(β − α) and the mass of charged Higgs are strongly constrained. In addition, the surviving samples favor the wrong-sign Yukawa coupling region, namely that the 125.5 GeV Higgs couplings to leptons have opposite sign to the couplings to gauge bosons and quarks.

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Wang, L., & Han, X. F. (2015). A light pseudoscalar of 2HDM confronted with muon g-2 and experimental constraints. Journal of High Energy Physics, 2015(5). https://doi.org/10.1007/JHEP05(2015)039

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