16 research outputs found

    Measurement of sin2 θlept eff using eþe− pairs from γ=Z bosons produced in pp collisions at a center-of-momentum energy of 1.96 TeV

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    At the Fermilab Tevatron proton-antiproton (pp¯) collider, Drell-Yan lepton pairs are produced in the process pp¯→e+e−+X through an intermediate γ∗/Z boson. The forward-backward asymmetry in the polar-angle distribution of the e− as a function of the e+e−-pair mass is used to obtain sin2θlepteff, the effective leptonic determination of the electroweak-mixing parameter sin2θW. The measurement sample, recorded by the Collider Detector at Fermilab (CDF), corresponds to 9.4  fb−1 of integrated luminosity from pp¯ collisions at a center-of-momentum energy of 1.96 TeV, and is the full CDF Run II data set. The value of sin2θlepteff is found to be 0.23248±0.00053. The combination with the previous CDF measurement based on μ+μ− pairs yields sin2θlepteff=0.23221±0.00046. This result, when interpreted within the specified context of the standard model assuming sin2θW=1−M2W/M2Z and that the W- and Z-boson masses are on-shell, yields sin2θW=0.22400±0.00045, or equivalently a W-boson mass of 80.328±0.024  GeV/c2

    Study of top quark production and decays involving a tau lepton at CDF and limits on a charged Higgs boson contribution

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    We present an analysis of top-antitop quark production and decay into a tau lepton, tau neutrino, and bottom quark using data from 9??fb-1 of integrated luminosity at the Collider Detector at Fermilab. Dilepton events, where one lepton is an energetic electron or muon and the other a hadronically decaying tau lepton, originating from proton-antiproton collisions at vs=1.96??TeV, are used. A top-antitop quark production cross section of 8.1±2.1??pb is measured, assuming standard-model top quark decays. By separately identifying for the first time the single-tau and the ditau components, we measure the branching fraction of the top quark into the tau lepton, tau neutrino, and bottom quark to be (9.6±2.8)%. The branching fraction of top quark decays into a charged Higgs boson and a bottom quark, which would imply violation of lepton universality, is limited to be less than 5.9% at a 95% confidence level [for B(H-?t¯?)=1]

    Measurement of the dipion mass spectrum in X(3872)toJ/psipi+piX(3872) to J/psi pi^+ pi^- decays

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    Search for H to b anti-b produced in association with W bosons in pbarppbar{p} collisions at sqrts=sqrt{s} = 1.96-TeV

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    Search for neutral MSSM Higgs bosons decaying to tau pairs in pbarppbar{p} collisions at sqrts=1.96sqrt{s} = 1.96 TeV

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    Measurement of the tbartt bar{t} Production Cross Section in pbarpp bar{p} collisions at sqrtssqrt{s} = 1.96-TeV in the All Hadronic Decay Mode

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    A precise measurement of the WW-boson mass with the Collider Detector at Fermilab

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    We present a measurement of the WW-boson mass, MWM_W, using data corresponding to 2.2/fb of integrated luminosity collected in ppbar collisions at s\sqrt{s} = 1.96 TeV with the CDF II detector at the Fermilab Tevatron. The selected sample of 470126 WeνW\to e\nu candidates and 624708 WμνW\to\mu\nu candidates yields the measurement MW=80387±12M_W = 80387\pm 12 (stat) ±15\pm 15 (syst)=80387±19 = 80387 \pm 19 MeV/c2/c^2 . This is the most precise single measurement of the WW-boson mass to date

    Measurement of the leptonic asymmetry in ttbar events produced in ppbar collisions at sqrt(s)=1.96 TeV

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    We measure the asymmetry in the charge-weighted rapidity of the lepton in semileptonic ttbar decays recorded with the CDF II detector using the full Tevatron Run II sample, corresponding to an integrated luminosity of 9.4/fb. A parametrization of the asymmetry as a function of the charge-weighted rapidity is used to correct for the finite acceptance of the detector and recover the production-level asymmetry. The result of afb(lep) = 0.094 +0.032 -0.029 is to be compared to the standard model next-to-leading-order prediction of afb(lep) = 0.038 +-0.003

    Indirect measurement of sin2θW\sin^2 θ_W (or MWM_W) using μ+μμ^+μ^- pairs from γ/Zγ^*/Z bosons produced in ppˉp\bar{p} collisions at a center-of-momentum energy of 1.96 TeV

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    Drell-Yan lepton pairs are produced in the process ppˉμ+μ+Xp\bar{p} \rightarrow \mu^+\mu^- + X through an intermediate γ/Z\gamma^*/Z boson. The forward-backward asymmetry in the polar-angle distribution of the μ\mu^- as a function of the invariant mass of the μ+μ\mu^+\mu^- pair is used to obtain the effective leptonic determination sin2θefflept\sin^2 \theta^{lept}_{eff} of the electroweak-mixing parameter sin2θW\sin^2 \theta_W, from which the value of sin2θW\sin^2 \theta_W is derived assuming the standard model. The measurement sample, recorded by the Collider Detector at Fermilab (CDF), corresponds to 9.2 fb-1 of integrated luminosity from ppˉp\bar{p} collisions at a center-of-momentum energy of 1.96 TeV, and is the full CDF Run II data set. The value of sin2θefflept\sin^2 \theta^{lept}_{eff} is found to be 0.2315 +- 0.0010, where statistical and systematic uncertainties are combined in quadrature. When interpreted within the context of the standard model using the on-shell renormalization scheme, where sin2θW=1MW2/MZ2\sin^2 \theta_W = 1 - M_W^2/M_Z^2, the measurement yields sin2θW\sin^2 \theta_W = 0.2233 +- 0.0009, or equivalently a W-boson mass of 80.365 +- 0.047 GeV/c^2. The value of the W-boson mass is in agreement with previous determinations in electron-positron collisions and at the Tevatron collider

    Measurement of the Top-Quark Mass in the All-Hadronic Channel using the full CDF data set

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    The top-quark mass M_top is measured using top quark-antiquark pairs produced in proton-antiproton collisions at a center-of-mass energy of 1.96 TeV and decaying into a fully hadronic final state. The full data set collected with the CDFII detector at the Fermilab Tevatron Collider, corresponding to an integrated luminosity of 9.3 fb-1, is used. Events are selected that have six to eight jets, at least one of which is identified as having originated from a b quark. In addition, a multivariate algorithm, containing multiple kinematic variables as inputs, is used to discriminate signal events from background events due to QCD multijet production. Templates for the reconstructed top-quark mass are combined in a likelihood fit to measure M_top with a simultaneous calibration of the jet-energy scale. A value of M_top = 175.07+- 1.19(stat)+1.55-1.58(syst) GeV/c^2 is obtained for the top-quark mass
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