38 research outputs found

    The Hadronic Tau Decay Signature of a Heavy Charged Higgs Boson at LHC

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    The hadronic tau decay channel offers by far the best signature for heavy charged Higgs boson search at the LHC in the large tanβ\tan\beta region. By exploiting the distinct polarization of the tau and its large transverse mass, along with the accompanying missing--pTp_T, one can probe for a charged Higgs boson up to a mass of about 600 GeV in an essentially background-free environment. The transverse mass distribution of the tau jet also provides a fairly unambiguous estimate of the charged Higgs boson mass.Comment: 11 pages, latex, including 3 figure

    The MSSM prediction for W+/- H-/+ production by gluon fusion

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    We discuss the associated W+/- H-/+ production in p p collision for the Large Hadron Collider. A complete one-loop calculation of the loop-induced subprocess g g -> W+/- H-/+ is presented in the framework of the Minimal Supersymmetric Standard Model (MSSM), and the possible enhancement of the hadronic cross section is investigated under the constraint from the squark direct-search results and the low-energy precision data. Because of the large destructive interplay in the quark-loop contributions between triangle-type and box-type diagrams, the squark-loop contributions turn out to be comparable with the quark-loop ones. In particular, the hadronic cross section via gluon fusion can be extensively enhanced by squark-pair threshold effects in the box-type diagrams, so that it can be as large as the hadronic cross section via the b b-bar -> W+/- H-/+ subprocess which appears at tree level.Comment: 35 pages, 7 figures, version to appear in Physical Review

    Single Charged Higgs production as a probe of CP violation at a Muon Collider

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    We consider single charged Higgs (H±H^{\pm}) production in association with a W±W^{\pm} boson at μ+μ\mu^+\mu^- colliders, in the context of the general CP violating Two Higgs Doublet Model (2HDM). We find that large cross-sections for the processes μ+μH+W,HW+\mu^+\mu^-\to H^+W^-,H^-W^+ are possible, and offer an attractive way of producing H±H^{\pm} at μ+μ\mu^+\mu^- colliders. The difference in the cross-sections for H+WH^+W^- and HW+H^-W^+ may exceed 1000 fb, and this represents a novel way of probing CP violation in the Higgs sector.Comment: 15 pages, LaTex, 6 figure

    Determining the Chirality of Yukawa Couplings via Single Charged Higgs Boson Production in Polarized Photon Collision

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    When the charged Higgs boson is too heavy to be produced in pairs, the predominant production mechanism at Linear Colliders is via the single charged Higgs boson production processes, such as ee+bcˉH+,τνˉH+e^-e^+ \to b \bar c H^+, \tau \bar \nu H^+ and γγbcˉH+,τνˉH+\gamma\gamma \to b \bar c H^+, \tau \bar \nu H^+. We show that the yield of a heavy charged Higgs boson at a γγ\gamma\gamma collider is typically one or two orders of magnitude larger than that at an ee+e^-e^+ collider. Furthermore, a polarized γγ\gamma\gamma collider can determine the chirality of the Yukawa couplings of fermions with charged Higgs boson via single charged Higgs boson production, and thus discriminate models of new physics.Comment: Version accepted by Physical Review Letters (references added, minor rewording, RevTex4

    Charged Higgs Observability Through Associated Production With W at a Muon Collider

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    The observability of a charged Higgs boson produced in association with a W boson at future muon colliders is studied. The analysis is performed within the MSSM framework. The charged Higgs is assumed to decay to tb and a fully hadronic final state is analyzed, i.e., mu+mu- \rightarrow H\pmW\mp \rightarrow tbW \rightarrow WbbW \rightarrow jjjjbb. The main background is tt production in fully hadronic final state which is an irreducible background with very similar kinematic features. It is shown that although the discovery potential is almost the same for a charged Higgs mass in the range 200 GeV < mH\pm < 400 GeV, the signal significance is about 1sigma for tanbeta = 50 at integrated luminosity of 50 fb-1. The signal rate is well above that at e+e- linear colliders with the same center of mass energy and enough data (O(1 ab-1)) will provide the same discovery potential for all heavy charged Higgs masses up to mH\pm \sim 400 GeV, however, the muon collider cannot add anything to the LHC findings.Comment: 18 pages, 11 figure

    Effective lagrangian for the tbH^+ interaction in the MSSM and charged Higgs phenomenology

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    In the framework of a 2HDM effective lagrangian for the MSSM, we analyse important phenomenological aspects associated with quantum soft SUSY-breaking effects that modify the relation between the bottom mass and the bottom Yukawa coupling. We derive a resummation of the dominant supersymmetric corrections for large values of \tb to all orders in perturbation theory. With the help of the operator product expansion we also perform the resummation of the leading and next-to-leading logarithms of the standard QCD corrections. We use these resummation procedures to compute the radiative corrections to the \tbH, \Htb decay rates. In the large \tb regime, we derive simple formulae embodying all the dominant contributions to these decay rates and we compute the corresponding branching ratios. We show, as an example, the effect of these new results on determining the region of the \mH--\tb plane excluded by the Tevatron searches for a supersymmetric charged Higgs boson in top quark decays, as a function of the MSSM parameter space.Comment: 33 pages, LaTeX, 17 figures, revised version submitted to Nuc. Phys.

    Indirect bounds on heavy scalar masses of the two-Higgs-doublet model in light of recent Higgs boson searches

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    We study an upper bound on masses of additional scalar bosons from the electroweak precision data and theoretical constraints such as perturbative unitarity and vacuum stability in the two Higgs doublet model taking account of recent Higgs boson search results. If the mass of the Standard-Model-like Higgs boson is rather heavy and is outside the allowed region by the electroweak precision data, such a discrepancy should be compensated by contributions from the additional scalar bosons. We show the upper bound on masses of the additional scalar bosons to be about 2 (1)(1) TeV for the mass of the Standard-Model-like Higgs boson to be 240 (500)(500) GeV.Comment: 11 pages, 5 eps file

    O(αs)O(\alpha_s) Corrections to bbˉW±Hb \bar b \to W^{\pm}H^{\mp} at the CERN Large Hadron Collider

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    The O(αs)O(\alpha_{s}) corrections to the cross section for bbˉW±Hb \bar b \to W^{\pm}H^{\mp} at the LHC are calculated in the minimal supersymmetric standard model (MSSM) in the MSˉ\bar{MS} and OS (on-mass-shell) renormalization schemes. The results in two schemes are in good agreement. In the MSˉ\bar{MS} scheme, the QCD corrections are negative and within 14 -14% \sim -20% for charged Higgs mass up to 1 TeV and tanβ>15\tan\beta >15. For tanβ=2\tan\beta =2, the magnitude of the QCD corrections can be greater than 30%.Comment: Initial-gluon contribution added, version to appear in PR

    Associated charged Higgs and W boson production in the MSSM at the CERN Large Hadron Collider

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    We investigate the viability of observing charged Higgs bosons (H^+/-) produced in association with W bosons at the CERN Large Hadron Collider, using the leptonic decay H^+ -> tau^+ nu_tau and hadronic W-decay, within different scenarios of the Minimal Supersymmetric Standard Model (MSSM) with both real and complex parameters. Performing a parton level study we show how the irreducible Standard Model background from W+2 jets can be controlled by applying appropriate cuts and find that the size of a possible signal depends on the cuts needed to suppress QCD backgrounds and misidentifications. In the standard maximal mixing scenario of the MSSM we find a viable signal for large tan(beta) and intermediate H^+/- masses (~m_t) when using optimistic cuts whereas for more pessimistic ones we only find a viable signal for very large tan(beta) (>~50). We have also investigated a special class of MSSM scenarios with large mass-splittings among the heavy Higgs bosons where the cross-section can be resonantly enhanced by factors up to one hundred, with a strong dependence on the CP-violating phases. Even so we find that the signal after cuts remains small except for small masses (~< m_t) with optimistic cuts. Finally, in all the scenarios we have investigated we have only found small CP-asymmetries.Comment: 28 pages, 12 figures, version to appear in Euro. Phys. J.

    An effective lagrangian description of charged Higgs decays H^+ -> Wg, WZ and Wh

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    Charged Higgs decays are discussed within an effective lagrangian extension of the two-higgs doublet model, assuming new physics appearing in the Higgs sector of this model. Low energy constrains are used to imposse bounds on certain dimension -six operators that describe the modified charged Higgs interactions. These bounds are used then to study the decays H^+ -> Wg, WZ and Wh, which can have branching ratios of order 10^-5, 10^-1 and O(1), respectively; thse modes are thus sensitive probes of the symmetries of the Higgs sector that could be tested at future colliders.Comment: 15 pages, 3 figure
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