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      Pseudoscalar Higgs Bosons at the LHC: Production and Decays into Electroweak Gauge Bosons Revisited

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          Abstract

          We analyze and compute, within a number of standard model (SM) extensions, the cross sections \(\sigma_{A\to VV'}\) for the production of a heavy neutral pseudoscalar Higgs boson/spin-zero resonance at the LHC and its subsequent decays into electroweak gauge bosons. For comparison we calculate also the corresponding cross sections for a heavy scalar. The SM extensions we consider include a type-II two-Higgs doublet model (2HDM), a 2HDM with 4 chiral fermion generations, the minimal supersymmetric extension of the SM (MSSM), and top-color assisted technicolour models. Presently available phenomenological constraints on the parameters of these models are taken into account. We find that, with the exception of the MSSM, these models permit the LHC cross sections \(\sigma_{A\to VV'}\) to be of observable size. That is, a pseudoscalar resonance may be observable, if it exists, at the LHC in its decays into electroweak gauge bosons, in particular in \(WW\) and \(\gamma \gamma\) final states.

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          New constraint on a strongly interacting Higgs sector.

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            Towards High-Precision Predictions for the MSSM Higgs Sector

            The status of the evaluation of the MSSM Higgs sector is reviewed. The phenomenological impact of recently obtained corrections is discussed. In particular it is shown that the upper bound on m_h within the MSSM is shifted upwards. Consequently, lower limits on tan beta obtained by confronting the upper bound as function of tan beta with the lower bound on m_h from Higgs searches are significantly weakened. Furthermore, the region in the M_A-tan beta-plane where the coupling of the lightest Higgs boson to down-type fermions is suppressed is modified. The presently not calculated higher-order corrections to the Higgs-boson mass matrix are estimated to shift the mass of the lightest Higgs boson by up to 3 GeV.
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              Higgs-boson production from heavy-quark fusion

                Author and article information

                Journal
                29 March 2010
                Article
                10.1140/epjc/s10052-010-1335-1
                1003.5585
                af785b06-8fa9-4348-b5e5-c4384b372d84

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                TTK-10-25
                Eur.Phys.J.C69:31-43,2010
                Latex, 25 pages, 3 figures
                hep-ph

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