644 research outputs found

    Hadroproduction of the Chi1 and Chi2 States of Charmonium in 800 GeV/c Proton-Silicon Interactions

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    The cross sections for the hadroproduction of the Chi1 and Chi2 states of charmonium in proton-silicon collisions at sqrt{s}=38.8 GeV have been measured in Fermilab fixed target Experiment 771. The Chi states were observed via their radiative decay to J/psi+gamma, where the photon converted to e+e- in the material of the spectrometer. The measured values for the Chi1 and Chi2 cross sections for x_F>0 are 263+-69(stat)+-32(syst) and 498+-143(stat)+-67(syst) nb per nucleon respectively. The resulting sigma(Chi1}/sigma(Chi2) ratio of 0.53+-0.20(stat)+-0.07(syst), although somewhat larger than most theoretical expectations, can be accomodated by the latest theoretical estimates.Comment: 4 pages, 4 figure

    Determination of CP and CPT violation parameters in the neutral kaon system using the Bell-Steinberger relation and data from the KLOE experiment

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    We present an improved determination of the CP and CPT violation parameters Re(epsilon) and Im(delta) based on the unitarity condition (Bell-Steinberger relation) and on recent results from the KLOE experiment. We find Re(epsilon) = (159.6 \pm 1.3)10^-5 and Im(delta) = (0.4 \pm 2.1)10^-5, consistent with no CPT violation.Comment: Submitted to JHE

    Measurements of the Absolute Branching Ratios for the Dominant KL Decays, the KL Lifetime, and Vus with the KLOE Detector

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    From a sample of about 10^9 Phi mesons produced at DAFNE, we have selected KL mesons tagged by observing KS->pi+pi- decays. We present results on the major KL branching ratios, including those of the semileptonic decays needed for the determination of Vus. These branching ratio measurements are fully inclusive with respect to final-state radiation. The KL lifetime has also been measured.Comment: Submitted to Phys. Lett.

    A direct search for the CP-violating decay Ks->3p^0 with the KLOE detector at DAFNE

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    We have searched for the decay Ks->3p^0 with the KLOE experiment at DAFNE using data from e^+ e^- collisions at a center of mass energy W= m(phi) for an integrated luminosity L=450 pb^-1. The search has been performed with a pure Ks beam obtained by tagging with Kl interactions in the calorimeter and detecting six photons. We find an upper limit for the branching ratio of 1.2x10^-7 at 90% C.L.Comment: 15 pages, 6 figures. To be submitted to Physics Letter

    Measurement of the KL meson lifetime with the KLOE detector

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    We present a measurement of the KL lifetime using the KLOE detector. From a sample of 4 x 10^8 KS KL pairs following the reaction e+ e- -> phi -> KS KL we select 15 x 10^6 KL -> p0 p0 p0 decays tagged by KS -> pi+ pi- events. From a fit of the proper time distribution we find tau_L = (50.92 +- 0.17{stat} +- 0.25{syst})$ ns. This is the most precise measurement of the KL lifetime performed to date.Comment: 14 pages, 14 figure

    Measurement of hadronic cross section and preliminary results on the pion form factor using the radiative return at DAPHNE

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    In the fixed energy environment of the e+ee^{+}e^{-} collider DAΦ\PhiNE, KLOE can measure the cross section of the process e+ee^{+}e^{-} \to hadrons as a function of the hadronic system energy using the radiative return. At energies below 1 GeV, e+eρπ+πe^{+}e^{-} \to \rho \to \pi^{+}\pi^{-} is the dominating hadronic process. We report here on the status of the analysis for the e^{+}e^{-} \to \ppg channel, which allows to obtain a preliminary measurement of the pion form factor using an integrated luminosity of 73pb1\sim73 pb^{-1}.Comment: Invited talk at the Seventh International Workshop on Tau Lepton Physics (TAU02-WE07), Santa Cruz, Ca, USA, Sept 2002, 9 pages, LaTeX, 9 eps figure

    Measurement of the branching fraction for the decay KS --> pi e nu

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    We present a measurement of the branching ratio BR(KS --> pi e nu) performed using the KLOE detector. KS mesons are produced in the reaction e+ e- --> phi --> KS KL at the DAFNE collider. In a sample of about 5 million KS-tagged events we find 624 +- 30 semileptonic KS decays. Normalizing to the KS --> pi+ pi- count in the same data sample, we obtain BR(KS --> pi e nu) = (6.91 +- 0.37) 10^-4, in agreement with the Standard Model expectation.Comment: 9 pages, 5 Encapsulated Postscript figures. Submitted to Phys. Lett.

    Study of the decay phi--> f0(980)g --> pi+pi-g with the KLOE detector

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    We measured, with the KLOE detector, the spectrum of pi+pi- invariant mass in a sample of 6.7 x 10^5 e+e- --> pi+pi-g events with the photon at large polar angle (theta_g>45^o) at a centre of mass energy sqrt(s) around the phi mass. We observe a clear contribution from the intermediate process phi --> f0(980)g. A sizeable effect is also observed in the distribution of the forward-backeard asymmetry. We use different theoretical models to fit the spectrum and we determine the f_0 mass and coupling constants to the phi, to pi+pi- and to KK.Comment: 15 pages, 6 figures, submitted to Phys.Lett.

    Measurement of the pseudoscalar mixing angle and η\eta^{\prime} gluonium content with KLOE detector

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    We have measured the ratio Rϕ=BR(ϕηγ)/BR(ϕηγ)R_{\phi}=BR(\phi \to \eta^{\prime} \gamma)/BR(\phi \to \eta \gamma) by looking for the radiative decays ϕηγ\phi \to \eta^{\prime} \gamma and ϕηγ\phi \to \eta \gamma in the final states π+π\pi^+\pi^- 7 γ\gamma's and 7 γ\gamma's respectively, in a sample of 1.3109\sim 1.3\cdot 10^{9} ϕ\phi mesons produced at the Frascati ϕ\phi-factory. We obtain Rϕ=(4.77±0.09stat±0.19sys)103R_{\phi}=(4.77\pm0.09_{stat}\pm0.19_{sys})\cdot 10^{-3} from which we derive BR(ϕηγ)=(6.20±0.11stat±0.25sys)105BR(\phi \to \eta^{\prime} \gamma)=(6.20\pm0.11_{stat}\pm0.25_{sys})\cdot 10^{-5}. In the hypothesis of no gluonium content we extract the pseudoscalar mixing angle in the quark-flavor basis ϕP=(41.4±0.3stat±0.7sys±0.6th)\phi_P=(41.4\pm0.3_{stat}\pm0.7_{sys}\pm0.6_{th})^{\circ}. Combining the value of RϕR_{\phi} with other constraints, we estimate the gluonium fractional content of η\eta^{\prime} meson as Z2=0.14±0.04Z^2 = 0.14\pm0.04 and the mixing angle ϕP=(39.7±0.7)\phi_P = (39.7\pm0.7)^{\circ}.Comment: 13 pages, 8 figure
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