14 research outputs found

    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

    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.

    Higgs-Boson Production Induced by Bottom Quarks

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    Bottom quark-induced processes are responsible for a large fraction of the LHC discovery potential, in particular for supersymmetric Higgs bosons. Recently, the discrepancy between exclusive and inclusive Higgs boson production rates has been linked to the choice of an appropriate bottom factorization scale. We investigate the process kinematics at hadron colliders and show that it leads to a considerable decrease in the bottom factorization scale. This effect is the missing piece needed to understand the corresponding higher order results. Our results hold generally for charged and for neutral Higgs boson production at the LHC as well as at the Tevatron. The situation is different for single top quark production, where we find no sizeable suppression of the factorization scale. Turning the argument around, we can specify how large the collinear logarithms are, which can be resummed using the bottom parton picture.Comment: 18 page

    Charged and Pseudoscalar Higgs production at a Muon Collider

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    We consider single charged Higgs (H±H^{\pm}) and pseudoscalar Higgs (A0A^0) production in association with a gauge boson at μ+μ\mu^+\mu^- colliders. We find that the tree-level t-channel and s-channel contributions to μ+μH±W,A0Z\mu^+\mu^-\to H^{\pm}W^{\mp}, A^0Z are enhanced for large values of tanβ\tan\beta, allowing sizeable cross-sections whose analogies at e+ee^+e^- colliders would be very small. These processes provide attractive new ways of producing such particles at μ+μ\mu^+\mu^- colliders and are superior to the conventional methods in regions of parameter space.Comment: 11 pages Latex, 5 figures, formulae added in sections 2.2 and 2.3, extra discussion in section 2.3, references adde

    Measurements of the SUSY Higgs self-couplings and the reconstruction of the Higgs potential

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    We address the issue of the reconstruction of the scalar potential of a two-Higgs doublet model having in mind that of the MSSM. We first consider the general CP conserving dim-4 effective potential. To fully reconstruct this potential, we show that even if all the Higgs masses and their couplings to the standard model particles are measured one needs not only to measure certain trilinear Higgs self-couplings but some of the quartic couplings as well. We also advocate expressing the Higgs self couplings in the mass basis. We show explicitly, that in the so-called decoupling limit, the most easily accessible Higgs self-couplings are given in terms of the Higgs mass while all other dependencies on the parameters of the general effective potential are screened. This helps also easily explain how, in the MSSM, the largest radiative corrections which affect these self couplings are reabsorbed by using the corrected Higgs mass. We also extend our analysis to higher order operators in the effective Higgs potential. While the above screening properties do not hold, we argue that these effects must be small and may not be measured considering the foreseen poor experimental precision in the extraction of the SUSY Higgs self-couplings.Comment: 25 pages, 3 figure

    Prospects for heavy supersymmetric charged Higgs boson searches at hadron colliders

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    We investigate the production of a heavy charged Higgs boson at hadron colliders within the context of the MSSM. A detailed study is performed for all important production modes and basic background processes for the t\bar{t}b\bar{b} signature. In our analysis we include effects of initial and final state showering, hadronization, and principal detector effects. For the signal production rate we include the leading SUSY quantum effects at high \tan\beta>~ mt/mb. Based on the obtained efficiencies for the signal and background we estimate the discovery and exclusion mass limits of the charged Higgs boson at high values of \tan\beta. At the upgraded Tevatron the discovery of a heavy charged Higgs boson (MH^+ >~ 200 GeV) is impossible for the tree-level cross-section values. However, if QCD and SUSY effects happen to reinforce mutually, there are indeed regions of the MSSM parameter space which could provide 3\sigma evidence and, at best, 5\sigma charged Higgs boson discovery at the Tevatron for masses M_H^+<~ 300 GeV and M_H^+<~ 250 GeV, respectively, even assuming squark and gluino masses in the (500-1000) GeV range. On the other hand, at the LHC one can discover a H^+ as heavy as 1 TeV at the canonical confidence level of 5\sigma; or else exclude its existence at 95% C.L. up to masses ~ 1.5 TeV. Again the presence of SUSY quantum effects can be very important here as they may shift the LHC limits by a few hundred GeV.Comment: Latex2e, 44 pages, 15 figures, 6 tables, uses JHEP3.sty, axodraw.sty. Comments added. Discussion on QCD factors clarified. Added discussion on uncertainties. Change of presentation of Tables 4 and 5 and Fig.6. Results and conclusions unchanged. Version accepted in JHE

    Neutral Higgs boson pair production via γγ\gamma\gamma collision in the minimal supersymmetric standard model at linear colliders

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    We investigate in detail the γγ\gamma\gamma fusion production mechanisms of two neutral Higgs bosons (h0A0h^0A^0, H0A0 H^0A^0, h0H0h^0H^0 and H0H0H^0H^0) within the framework of the mSUGRA-inspired minimal supersymmetric standard model(MSSM) at an e+ee^+e^- linear colliders, which provide a probe of the trilinear Higgs self-couplings. We calculate the dependence of the production rates on Higgs boson masses, the ratio of the vacuum expectation values tanβ\tan \beta and the CMS energy s\sqrt{s}. We find that the cross section for the H0H0H^0H^0 production at LC can reach 0.2fb0.2 fb, while the cross section of A0H0A^0H^0 production is only 104103fb10^{-4}\sim 10^{-3} fb under our parameters.Comment: Accepted by Phys. Rev.

    Higgs-Erzeugung am grossen Hadronbeschleuniger LHC im minimalen supersymmetrischen Standardmodell

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    We study the production of Higgs-boson pairs at the CERN large hadron collider (LHC), in the context of the minimal supersymmetric standard model. At the tree level this proceeds via qq annihilation and at the one loop level via gg fusion. These mechanisms are investigated for the production of neutral and charged Higgs-boson pairs as well as for W&quot;#+-#H&quot;-&quot;+ associated production. We present full analytical results for these processes. For our numerical analysis, we adopt the SUGRA-inspired scenario. It turns out that the SUSY contribution enhances the cross section up to 50% in the case of H&quot;+H&quot;- production. In the case of W&quot;#+-#H&quot;-&quot;+ associated production, this can make an effect of #+-# 10% depending on tan #beta# and m_H&quot;_#+-#&quot;. In the case of neutral Higgs production, this can enhance or decrease the cross section depending on tan #beta# and the final-state Higgs masses. (orig.)SIGLEAvailable from TIB Hannover: RR 8919(2000-045) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Technische InformationsbibliothekDEGerman

    Pair production of neutral Higgs bosons at the CERN Large Hadron Collider

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    We study the hadroproduction of two neutral Higgs bosons in the minimal supersymmetric extension of the standard model, which provides a handle on the trilinear Higgs couplings. We include the contributions from quark-antiquark annihilation at the tree level and those from gluon-gluon fusion, which proceeds via quark and squark loops. We list compact results for the tree-level partonic cross sections and the squark loop amplitudes, and we confirm previous results for the quark loop amplitudes. We quantitatively analyze the hadronic cross sections at the CERN Large Hadron Collider assuming a favorable supergravity-inspired scenario. (orig.)Available from TIB Hannover: RA 2999(01-015) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Technische InformationsbibliothekSIGLEDEGerman

    Virtual sfermion effects on vector-boson pair production at e&quot;+e&quot;- colliders

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    We study the quantum effects on vector-boson pair production in e&quot;+e&quot;-annihilation induced by the sleptons and squarks of the minimal supersymmetric extension of the standard model (MSSM) in the one-loop approximation. We list full analytic results, and quantitatively analyze the resulting deviation from the standard-model prediction of e&quot;+e&quot;- #-&gt;# W&quot;+W&quot;- for the supergravity-inspired MSSM. The latter can be rendered small throughout the whole parameter space by an appropriate choice of renormalization scheme. (orig.)Available from TIB Hannover: RA 2999(99-189) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Technische InformationsbibliothekSIGLEDEGerman
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