17 research outputs found

    Measurement of the W mass in e+e−e^+ e^- collisions at 183 GeV

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    The mass of the W boson is obtained from reconstructed invariant mass distributions in W-pair events. The sample of W pairs is selected from 57 pb−1^{-1} collected with the ALEPH detector in 1997 at a centre-of-mass energy of 183 GeV. The invariant mass distributions of reweighted Monte Carlo events are fitted separately to the experimental distributions in the qqbarqqbarqqbarqqbar and all l\nuqqbar channels to give the following W masses: mWhadronic=80.461±0.177(stat.)±0.045(syst.)±0.056(theory)GeV/c2m_{W}^{hadronic} = 80.461 \pm 0.177(stat.) \pm 0.045(syst.) \pm 0.056(theory) GeV/c^2, mWsemileptonic=80.326±0.184(stat.)±0.040(syst.)GeV/c2m_{W}^{semileptonic} = 80.326 \pm 0.184(stat.) \pm 0.040(syst.) GeV/c^2 where the theory error represents the possible effects of final state interactions. The combination of these two measurements, including the LEP energy calibration uncertainty, gives $m_{W} = 80.393 \pm 0.128(stat.)\pm 0.041(syst.) \pm 0.028(theory)\pm 0.021(LEP) GeV/c^2

    A study of the decay width difference in the Bs0−B‟s0B^{0}_{s}-\overline{B}^{ 0}_{s} system using ϕϕ\phi\phi correlations

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    In a data sample of about four million hadronic Z decays recorded with the ALEPH detector from 1991 to 1995, the Bs0→Ds(∗)+Ds(∗)−B^{0}_{s} \to D^{(*)+}_{s}D^{(*)-}_{s} decay is observed, based on tagging the nal state with two ϕ\phi mesons in the same hemisphere. The Ds(∗)+Ds(∗)−D^{(*)+}_{s}D^{(*)-} _{s} final state is mostly CP even and corresponds to the short-lived B0B^0 mass eigenstate. The branching ratio of this decay is measured to be BR(Bs0(short)→Ds(∗)+Ds(∗)−)=(23±10−9+19)(B^{0}_{s}(short) \to D^{(*)+}_{s}D^{(*)-}_{s}) = (23\pm 10^{+19}_{-9})%. A measurement of the lifetime of the B0B^0(short) gives 1.27±\pm 0.33±\pm 0.07 ps. The lifetime and branching ratio measurements allow two essentially independent estimates to be made of the relative decay width difference ΔΓ/Γ\Delta\Gamma/\Gamma in the Bs0−B‟s0B^{0}_{s}-\overline{B}^{0}_{s} system, corresponding to an average value $\Delta\Gamma/\Gamma = (25^{+21}_{-14})%

    Measurement of the W Mass and Width in e+e−e^+ e^- Collisions at 189 GeV

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    The mass of the W boson is determined in e+e- collisions at LEP by the direct reconstruction of W decays in WW->qqqq and WW->lvqq events, supplemented by measurements using the kinematic properties of the leptons in the WW->lvlv decay channel. The main sample of W pairs is selected from an integrated luminosity of 174 pb^-1 collected with the ALEPH detector in 1998 at a centre-of-mass energy of 188.63 GeV.The combined result from all channels is mW = 80.432+-0.072(stat.)+-0.041(syst.)+-0.019(FSI)+-0.017(LEP) GeV/c^2, where FSI represents the possible effects of final state interactions in the qqqq channel. In a second two-parameter fit to the qqqq, evqq and mvqq channels, where the W mass and width are decoupled, the average W width is found to be 2.24+-0.20(stat.)+-0.13(syst.) GeV/c^2, consistent with the Standard Model prediction. The combination of the mass measurement presented in this paper together with those derived previously from the W pair cross section at 161 and 172 GeV and direct reconstruction at 172 and 183 GeV gives mW = 80.418+-0.061(stat.)+-0.038(syst.)+-0.019(FSI)+-0.017(LEP) Ge

    Search for Gauge-Mediated SUSY Breaking Topologies at s∌\sqrt{s} \sim 189 GeV

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    Searches for topologies characteristic of Gauge Mediated SUSY Breaking models (GMSB) are performed by analysing 173.6 pb^-1 of data collected at Ecm = 188.6~GeV with the ALEPH detector.These topologies include acoplanar photons, non-pointing single photon, acoplanar leptons, large impact parameter leptons, detached slepton decay vertices, heavy stable charged sleptons and four leptons plus missing energy final states.No evidence for these new phenomena is observed and limits on production cross sections and sparticle masses are derived. A scan of a minimal GMSB parameter space is performed and model dependent lower limits of about 45 GeV/c^2 on the next-to-lightest supersymmetric particle (NLSP) mass and of about 9 TeV on the mass scale parameter Lambda are derived, independently of the NLSP lifetime

    Study of Fermion Pair Production in e+e−e^{+}e^{-} Collisions at 130-183 GeV

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    The cross sections and forward-backward asymmetries of hadronic and leptonic events produced in e+e- collisions at centre-of-mass energies of 130-183 GeV are presented. Results for ee, mumu, tautau, qq, bb and cc production show no significant deviation from the Standard Model predictions. This enable constraints to be set upon physics beyond the Standard Model such as four-fermion contact interactions, leptoquarks, Z' bosons and R-parity violating squarks and sneutrinos. Limits on the energy scale Lambda of eeff contact interactions are typically in the range from 2-10 TeV. Limits on R-parity violating sneutrinos reach masses of a few hundred GeV for large values of their Yukawa couplings

    Measurement of the hadronic photon structure function at LEP 1 for ⟹Q2⟩\langle Q^{2} \rangle values between 9.9 and 284 GeV2^{2}

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    Inclusive gamma^*gamma interactions to hadronic final states where one scattered electron or positron is detected in the electromagnetic calorimeters have been studied in the LEP 1 data taken by ALEPH from 1991 to 1995. The event sample has been used to measure the hadronic structure function of the photon F_2^gamma in three bins with Q^2 of 9.9, 20.7 and 284 GeV^2

    Search for sleptons in e+e−e^+ e^- collisions at centre-of-mass energies up to 184 GeV

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    Measurement of W-pair production in e+^{+}e−^{-} collisions at 183 GeV

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    Scalar quark searches in e+e−e^+ e^- collisions at s\sqrt{s} = 181-184 GeV

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    Determination of ∣Vub∣\mid V_{ub} \mid from the Measurement of the Inclusive Charmless Semileptonic Branching Ratio of b hadrons

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    From a study of the kinematic properties of the final state produced in the semileptonic decays b-->X l nu, the inclusive charmless semileptonic branching ratio of b hadrons is measured. With a sam ple of 3.6 million hadronic Z decays recorded between 1992 and 1995 with the ALEPH detector at LEP, the value Br(b-->X_u l nu) is determined to be (1.73 +- 0.55_stat +- 0.55_syst)*10^{-3}, where X_u represents any charmless hadronic state and b is a mixture of b hadrons weighted by their production rates. This measurement yields the result |V_ub|^2= (18.68 +- 5.94_stat +- 5.94_syst +- 1 .45_HQE)*10^{-6}, where the last error comes from the conversion of the branching ratio to the CKM matrix element squared
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