Higgs mass prediction in the MSSM at three-loop level in a pure context
arXiv:1708.05720 · doi:10.1140/epjc/s10052-017-5368-6
Abstract
The impact of the three-loop effects of order on the mass of the light CP-even Higgs boson in the MSSM is studied in a pure context. For this purpose, we implement the results of Kant et al. into the C++ module Himalaya and link it to FlexibleSUSY, a Mathematica and C++ package to create spectrum generators for BSM models. The three-loop result is compared to the fixed-order two-loop calculations of the original FlexibleSUSY and of FeynHiggs, as well as to the result based on an EFT approach. Aside from the expected reduction of the renormalization scale dependence with respect to the lower order results, we find that the three-loop contributions significantly reduce the difference from the EFT prediction in the TeV-region of the SUSY scale . Himalaya can be linked also to other two-loop codes, thus allowing for the elevation of these codes to the three-loop level.
32 pages, 8 figures, 1 table [version submitted to EPJC]
References in corpus (13)
- Automatic Calculation of supersymmetric Renormalization Group Equations and Self Energies
- SARAH 3.2: Dirac Gauginos, UFO output, and more
- Higgs Mass and Unnatural Supersymmetry
- Higgs boson mass in supersymmetry to three loops
- FlexibleSUSY -- A spectrum generator generator for supersymmetric models
- CPsuperH2.0: an Improved Computational Tool for Higgs Phenomenology in the MSSM with Explicit CP Violation
- Momentum-dependent two-loop QCD corrections to the neutral Higgs-boson masses in the MSSM
- Precise Higgs mass calculations in (non-)minimal supersymmetry at both high and low scales
- Anomalous dimensions of gauge fields and gauge coupling beta-functions in the Standard Model at three loops
- Two-loop QCD corrections to the MSSM Higgs masses beyond the effective-potential approximation
- Higher Order Corrections and Unification in the Minimal Supersymmetric Standard Model: SOFTSUSY3.5.0
- Running mass of the b-quark in QCD and SUSY QCD
- O(α_s^2) corrections to the running top-Yukawa coupling and the mass of the lightest Higgs boson in the MSSM