Our code takes a selection of Higgs sector predictions for any particular model as input and then uses the experimental topological cross section limits from Higgs searches at LEP, the Tevatron and the LHC to determine if this parameter point has been excluded at 95% C.L.Further information can be found in arXiv:0811.4169 Comput.Phys.Commun.181:138-167,2010), arXiv:1102.1898 and the HiggsBounds 3.x.xbeta manual.

References in zbMATH (referenced in 11 articles , 1 standard article )

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  1. Dumont, Béranger: Higgs, supersymmetry and dark matter after run I of the LHC (2017)
  2. Zeune, Lisa: Constraining supersymmetric models. Using Higgs physics, precision observables and direct searches (2016)
  3. Hespel, Beno^ıt; López-Val, David; Vryonidou, Eleni: Higgs pair production via gluon fusion in the two-Higgs-doublet model (2014)
  4. Staub, Florian: SARAH 4: a tool for (not only SUSY) model builders (2014)
  5. Lee, J.S.; Carena, M.; Ellis, J.; Pilaftsis, A.; Wagner, C.E.M.: CPsuperH2.3: an updated tool for phenomenology in the MSSM with explicit CP violation (2013)
  6. Hirsch, M.; Malinský, M.; Porod, W.; Reichert, L.; Staub, F.: Hefty MSSM-like light Higgs in extended gauge models (2012)
  7. Rathsman, Johan; Rössler, Thomas: Closing the window on light charged Higgs bosons in the NMSSM (2012)
  8. Mandal, Sourav K.; Nojiri, Mihoko; Sudano, Matthew; Yanagida, Tsutomu T.: Testing the Nambu-Goldstone hypothesis for quarks and leptons at the LHC (2011)
  9. Akrami, Yashar; Scott, Pat; Edsjö, Joakim; Conrad, Jan; Bergström, Lars: A profile likelihood analysis of the constrained MSSM with genetic algorithms (2010)
  10. Bechtle, P.; Brein, O.; Heinemeyer, S.; Weiglein, G.; Williams, K.E.: HiggsBounds: confronting arbitrary Higgs sectors with exclusion bounds from LEP and the Tevatron (2010)
  11. Johansen, M.; Edsjö, J.; Hellman, S.; Milstead, D.: Long-lived stops in MSSM scenarios with a neutralino LSP (2010)