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Article
Report number arXiv:1306.1156 ; CERN-PH-TH-2013-114 ; DESY-13-100 ; MPP-2013-147 ; CERN-PH-TH-2013-114
Title Charged Higgs boson mass of the MSSM in the Feynman diagrammatic approach
Author(s) Frank, M. (KIT, Karlsruhe, Dept. Phys.) ; Galeta, L. (Cantabria Inst. of Phys.) ; Hahn, T. (Munich, Max Planck Inst.) ; Heinemeyer, S. (Cantabria Inst. of Phys.) ; Hollik, W. (Munich, Max Planck Inst.) ; Rzehak, H. (CERN) ; Weiglein, G. (DESY)
Publication 2013-09-16
Imprint 05 Jun 2013
Number of pages 20
Note Comments: 32 pages, 14 figures
32 pages, 14 figures
In: Phys. Rev. D 88 (2013) 055013
DOI 10.1103/PhysRevD.88.055013
Subject category Particle Physics - Phenomenology
Abstract The interpretation of the Higgs signal at $\sim$ 126 GeV within the Minimal Supersymmetric Standard Model (MSSM) depends crucially on the predicted properties of the other Higgs states of the model, as the mass of the charged Higgs boson, $M_{H^{\pm}}$. This mass is calculated in the Feynman-diagrammatic approach within the MSSM with real parameters. The result includes the complete one-loop contributions and the two-loop contributions of $O(\alpha_t\alpha_s)$. The one-loop contributions lead to sizable shifts in the $M_H^{\pm}$ prediction, reaching up to $\sim$ 8 GeV for relatively small values of M_A. Even larger effects can occur depending on the sign and size of the mu parameter that enters the corrections affecting the relation between the bottom-quark mass and the bottom Yukawa coupling. The two-loop $O(\alpha_t\alpha_s)$ terms can shift $M_H^{\pm}$ by more than 2 GeV. The two-loop contributions amount to typically about 30% of the one-loop corrections for the examples that we have studied. These effects can be relevant for precision analyses of the charged MSSM Higgs boson.
Copyright/License Preprint: © 2013-2024 CERN (License: CC-BY-3.0)



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 ჩანაწერი შექმნილია 2013-06-06, ბოლოს შესწორებულია 2021-07-16


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