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Measurement of WZ production and searches for anomalous top quark decays and Higgs boson production using tri-lepton final states in ppbar collisions at √s = 1.96 TeV
McGivern, Carrie Lynne
McGivern, Carrie Lynne
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Abstract
We present the results of three analyses; a WZ production cross section measurement, a search for new physics in anomalous top quark decays, and the search for the standard model Higgs boson, all with final states of three or more leptons – either electrons or muons – plus an imbalance of transverse momentum using Tevatron proton and anti-proton collisions at a center-of-mass energy of sqrt(s) = 1.96 TeV with the DZero detector at the Fermi National Accelerator Laboratory in Chicago, IL. The first analysis reports a measurement of the WZ → lνl+l− cross section. Using 4.1 fb−1 of integrated luminosity, we measure a cross section of 3.90−0.85+1.01(stat+syst) ± 0.31(lumi) pb, which is found to be in good agreement with the standard model prediction. The second analysis is an extension of the first, in which we use the same dataset and look for the flavor changing neutral current decay of t → Zq in ppbar → ttbar → WbZq → l'νl+l− + jets decays. Here q is considered to be either a u or c quark, and both the q and b quarks decay hadronically. We find no evidence of flavor changing neutral current production and set upper limits on the branching ratio of BR(t → Zq) −1, the full dataset available at DZero, we observe no excess above the standard model background prediction and extract limits on the Higgs boson production cross section times branching ratio for a Higgs boson mass range of mH = 100 - 200 GeV/c2, in intervals of 5 GeV/c2.
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Date
2012-05-31
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University of Kansas
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Keywords
Physics, Diboson production, Elementary particles and high energy physics, Fermilab, Flavor changing neutral current top quark decays, Higgs boson, Tevatron