39,366 research outputs found

    Threshold Resummed and Approximate NNLO results for W+W- Pair Production at the LHC

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    The next-to-leading order (NLO) QCD radiative corrections to W+W- production at hadron colliders are well understood. We combine NLO perturbative QCD calculations with soft-gluon resummation of threshold logarithms to find a next-to-next-to leading logarithmic (NNLL) prediction for the total cross section and the invariant mass distribution at the LHC. We also obtain approximate next-to-next-to-leading order (NNLO) results for the total W+W- cross section at the LHC which includes all contributions from the scale dependent leading singular terms. Our result for the approximate NNLO total cross section is the most precise theoretical prediction available. Uncertainties due to scale variation are shown to be small when the threshold logarithms are included. NNLL threshold resummation increases the W+W- invariant mass distribution by ~ 3-4% in the peak region for both \sqrt{S}=8 and 14 TeV. The NNLL threshold resummed and approximate NNLO cross sections increase the NLO cross section by 0.5-3% for \sqrt{S}=7, 8, 13, and 14 TeV.Comment: 29 pages, 7 figures, 3 tables. Discussion added to introduction, references updated, and typos correcte

    BsB_s Semileptonic Decays to DsD_s and Dsβˆ—D_s^* in Bethe-Salpeter Method

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    Using the relativistic Bethe-Salpeter method, the electron energy spectrum and the semileptonic decay widths of Bs0β†’Dsβˆ’β„“+Ξ½β„“B^0_s\to D^-_s \ell^+{\nu_\ell} and Bs0β†’Dsβˆ—βˆ’β„“+Ξ½β„“B^0_s\to D_s^{*-}\ell^+{\nu_\ell} are calculated. We obtained large branching ratios, Br(Bsβ†’DseΞ½e)=(2.85Β±0.35)Br(B_s\to D_se\nu_e)=(2.85\pm0.35)% and Br(Bsβ†’Dsβˆ—eΞ½e)=(7.09Β±0.88)Br (B_s\to D_s^*e\nu_e)=(7.09\pm0.88)%, which can be easily detected in the future experiment.Comment: 3 pages, 3 figures
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