FeynHiggs: a program for the calculation of MSSM Higgs-boson observables - Version 2.6.5. Nature of problem: The experimental searches for Higgs bosons have to be compared with theory predictions at a high level of accuracy. Radiative corrections are especially important in the Minimal Supersymmetric Standard Model (MSSM). Solution method: High-precision calculations (mostly based on the Feynman-diagrammatic approach) for various Higgs-boson observables in the MSSM are implemented. The program takes the basic model parameters as input and evaluates many MSSM Higgs-boson observables relevant for experimental Higgs-boson physics. (Source: http://cpc.cs.qub.ac.uk/summaries/)

References in zbMATH (referenced in 42 articles , 1 standard article )

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  1. Fazio, A. R.; Reyes R., E. A.: The lightest Higgs boson mass of the MSSM at three-loop accuracy (2019)
  2. Sonmez, Nasuf: Pair production of the lightest chargino at (\gamma\gamma)-collider (2019)
  3. Heinemeyer, Sven; Mondragón, Myriam; Patellis, Gregory; Tracas, Nicholas; Zoupanos, George: The LHC Higgs boson discovery: updated implications for finite unified theories and the SUSY breaking scale (2018)
  4. Heinemeyer, Sven; Mondragón, Myriam; Tracas, Nicholas; Zoupanos, George: Reduction of parameters in finite unified theories and the MSSM (2018)
  5. Hahn, Thomas; Paßehr, Sebastian: Implementation of the (\mathcalO(\alpha_t^2)) MSSM Higgs-mass corrections in FeynHiggs (2017)
  6. Antusch, Stefan; Sluka, Constantin: Predicting the sparticle spectrum from GUTs via SUSY threshold corrections with SusyTC (2016)
  7. Zeune, Lisa: Constraining supersymmetric models. Using Higgs physics, precision observables and direct searches (2016)
  8. Borowka, S.; Heinrich, G.; Jones, S. P.; Kerner, M.; Schlenk, J.; Zirke, T.: SecDec-3.0: numerical evaluation of multi-scale integrals beyond one loop (2015)
  9. Staub, Florian: Exploring new models in all detail with \textttSARAH (2015)
  10. Hollik, Wolfgang; Paßehr, Sebastian: Two-loop top-Yukawa-coupling corrections to the Higgs boson masses in the complex MSSM (2014)
  11. Bernard, Carole; Cui, Zhenyu; Forde, Martin; Jacquier, Antoine; McLeish, Don; Mijatović, Aleksandar: Correction note for “The large-maturity smile for the Heston model” (2013)
  12. Harlander, Robert V.; Liebler, Stefan; Mantler, Hendrik: \textttSusHi: a program for the calculation of Higgs production in gluon fusion and bottom-quark annihilation in the standard model and the MSSM (2013)
  13. Heinemeyer, S.; Mondrag, M.; Zoupanos, G.: Finite theories before and after the discovery of a Higgs boson at the LHC (2013)
  14. Figy, Terrance; Palmer, Sophy; Weiglein, Georg: Higgs production via weak boson fusion in the standard model and the MSSM (2012)
  15. Harlander, Robert V.; Hofmann, Franziska; Mantler, Hendrik: Supersymmetric Higgs production in gluon fusion (2011)
  16. Heinemeyer, S.; Herrero, M. J.; Peñaranda, S.; Rodríguez-Sánchez, A. M.: Higgs boson masses in the MSSM with heavy Majorana neutrinos (2011)
  17. Hollik, W.; Nhung, D. T.: CP violating asymmetry in (H^\pm\rightarrowW^\pmh_1) decays (2011)
  18. Mandal, Sourav K.; Nojiri, Mihoko; Sudano, Matthew; Yanagida, Tsutomu T.: Testing the Nambu-Goldstone hypothesis for quarks and leptons at the LHC (2011)
  19. Akrami, Yashar; Scott, Pat; Edsjö, Joakim; Conrad, Jan; Bergström, Lars: A profile likelihood analysis of the constrained MSSM with genetic algorithms (2010)
  20. Arhrib, Abdesslam; Benbrik, Rachid; Cheung, Kingman; Yuan, Tzu-Chiang: Higgs boson enhancement effects on squark-pair production at the LHC (2010)

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