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      Search for an Invisibly-Decaying Higgs Boson at LEP

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          Abstract

          A search for a Higgs boson produced in e^+e^- collisions in association with a Z boson and decaying into invisible particles is performed. Data collected at LEP with the L3 detector at centre-of-mass energies from 189 GeV to 209 GeV are used, corresponding to an integrated luminosity of 0.63/fb. Events with hadrons, electrons or muons with visible masses compatible with a Z boson and missing energy and momentum are selected. They are consistent with the Standard Model expectations. A lower limit of 112.3 GeV is set at 95% confidence level on the mass of the invisibly-decaying Higgs boson in the hypothesis that its production cross section equals that of the Standard Model Higgs boson. Relaxing this hypothesis, upper limits on the production cross section are derived.

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          Cornering gauge-mediated supersymmetry breaking with quasi-stable sleptons at the Tevatron

          , (2009)
          There are many theoretical reasons why heavy quasi-stable charged particles might exist. Pair production of such particles at the Tevatron can produce highly ionizing tracks (HITs) or fake muons. In gauge-mediated supersymmetry breaking, sparticle production can lead to events with a pair of quasi-stable sleptons, a significant fraction of which will have the same electric charge. Depending on the production mechanism and the decay chain, they may also be accompanied by additional energetic leptons. We study the relative importance of the resulting signals for the Tevatron Run II. The relative fraction of same-sign tracks to other background-free signals is an important diagnostic tool in gauge-mediated supersymmetry breaking that may provide information about mass splittings, tan(beta) and the number of messengers communicating supersymmetry breaking.

            Author and article information

            Journal
            13 January 2005
            Article
            10.1016/j.physletb.2005.01.030
            hep-ex/0501033
            cff48693-405d-4ed6-b2df-5074527dfd9f
            History
            Custom metadata
            CERN-PH-EP-2004-055
            Phys.Lett.B609:35-48,2005
            hep-ex

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