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HiggsBounds-4: improved tests of extended Higgs sectors against exclusion bounds from LEP, the Tevatron and the LHC

The European Physical Journal C · 2014 · Vol. 74(3)
P. BechtleOliver BreinS. HeinemeyerOscar StålTim StefaniakG. WeigleinKarina Williams

Abstract

We describe the new developments in version 4 of the public computer code HiggsBounds. HiggsBounds is a tool to test models with arbitrary Higgs sectors, containing both neutral and charged Higgs bosons, against the published exclusion bounds from Higgs searches at the LEP, Tevatron and LHC experiments. From the model predictions for the Higgs masses, branching ratios, production cross sections and total decay widths—which are specified by the user in the input for the program—the code calculates the predicted signal rates for the search channels considered in the experimental data. The signal rates are compared to the expected and observed cross section limits from the Higgs searches to determine whether a point in the model parameter space is excluded at 95 % confidence level. In this paper we present a modification of the HiggsBounds main algorithm that extends the exclusion test in order to ensure that it provides useful results in the presence of one or more significant excesses in the data, corresponding to potential Higgs signals. We also describe a new method to test whether the limits from an experimental search performed under certain model assumptions can be applied to a different theoretical model. Further developments discussed here include a framework to take into account theoretical uncertainties on the Higgs mass predictions, and the possibility to obtain the $$\chi ^2$$ likelihood of Higgs exclusion limits from LEP. Extensions to the user subroutines from earlier versions of HiggsBounds are described. The new features are demonstrated by additional example programs.

Particle physics theoretical and experimental studiesDark Matter and Cosmic PhenomenaParticle Detector Development and PerformanceHiggs bosonTevatronParticle physicsLarge Hadron ColliderPhysicsSubroutineParameter spaceBosonStandard Model (mathematical formulation)Computer science

Funding

  • Deutsche Forschungsgemeinschaft
  • Vetenskapsrådet
  • Ministerio de Ciencia e Innovación
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References
SPheno 3.1: extensions including flavour, CP-phases and models beyond the MSSM
Computer Physics Communications · 2012 · 849 citations
Broken Symmetries and the Masses of Gauge Bosons
Physical Review Letters · 1964 · 4,307 citations
Broken Symmetry and the Mass of Gauge Vector Mesons
Physical Review Letters · 1964 · 3,785 citations
The inert doublet model: an archetype for dark matter
Journal of Cosmology and Astroparticle Physics · 2007 · 644 citations
Theory and phenomenology of two-Higgs-doublet models
Physics Reports · 2012 · 2,507 citations
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