508 research outputs found

    Observation of the decay Λb0→Λc+pp‟π−\Lambda_b^0 \to \Lambda_c^+ p \overline{p} \pi^-

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    Measurement of C ⁣PC\!P asymmetries in two-body B(s)0B_{(s)}^{0}-meson decays to charged pions and kaons

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    International audienceThe time-dependent CP asymmetries in B0→π+π- and Bs0→K+K- decays are measured using a data sample of p p collisions corresponding to an integrated luminosity of 3.0  fb-1, collected with the LHCb detector at center-of-mass energies of 7 and 8 TeV. The same data sample is used to measure the time-integrated CP asymmetries in B0→K+π- and Bs0→π+K- decays. The results are Cπ+π-=-0.34±0.06±0.01, Sπ+π-=-0.63±0.05±0.01, CK+K-=0.20±0.06±0.02, SK+K-=0.18±0.06±0.02, AK+K-ΔΓ=-0.79±0.07±0.10, ACPB0=-0.084±0.004±0.003, and ACPBs0=0.213±0.015±0.007, where the first uncertainties are statistical and the second systematic. Evidence for CP violation is found in the Bs0→K+K- decay for the first time

    Observation of Bs0→D‟∗0ϕB_s^0 \to \overline{D}^{*0} \phi and search for B0→D‟0ϕB^0 \to \overline{D}^0 \phi decays

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    International audienceThe first observation of the Bs0→DÂŻ*0ϕ decay is reported, with a significance of more than seven standard deviations, from an analysis of pp collision data corresponding to an integrated luminosity of 3  fb-1, collected with the LHCb detector at center-of-mass energies of 7 and 8 TeV. The branching fraction is measured relative to that of the topologically similar decay B0→DÂŻ0π+π- and is found to be B(Bs0→DÂŻ*0ϕ)=(3.7±0.5±0.3±0.2)×10-5, where the first uncertainty is statistical, the second systematic, and the third from the branching fraction of the B0→DÂŻ0π+π- decay. The fraction of longitudinal polarization in this decay is measured to be fL=(73±15±4)%. The most precise determination of the branching fraction for the Bs0→DÂŻ0ϕ decay is also obtained, B(Bs0→DÂŻ0ϕ)=(3.0±0.3±0.2±0.2)×10-5. An upper limit, B(B0→DÂŻ0ϕ)<2.0 (2.3)×10-6 at 90% (95%) confidence level is set. A constraint on the ω-ϕ mixing angle ÎŽ is set at |ÎŽ|<5.2° (5.5°) at 90% (95%) confidence level

    Observation of a new Ξb−\Xi_b^- resonance

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    International audienceFrom samples of pp collision data collected by the LHCb experiment at s=7, 8 and 13 TeV, corresponding to integrated luminosities of 1.0, 2.0 and 1.5  fb-1, respectively, a peak in both the Λb0K- and Ξb0π- invariant mass spectra is observed. In the quark model, radially and orbitally excited Ξb- resonances with quark content bds are expected. Referring to this peak as Ξb(6227)-, the mass and natural width are measured to be mΞb(6227)-=6226.9±2.0±0.3±0.2  MeV/c2 and ΓΞb(6227)-=18.1±5.4±1.8  MeV/c2, where the first uncertainty is statistical, the second is systematic, and the third, on mΞb(6227)-, is due to the knowledge of the Λb0 baryon mass. Relative production rates of the Ξb(6227)-→Λb0K- and Ξb(6227)-→Ξb0π- decays are also reported

    Observation of the decay Bs0→D‟0K+K−B_s^0 \to \overline{D}^0 K^+ K^-

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    International audienceThe first observation of the Bs0→DÂŻ0K+K- decay is reported, together with the most precise branching fraction measurement of the mode B0→DÂŻ0K+K-. The results are obtained from an analysis of pp collision data corresponding to an integrated luminosity of 3.0  fb-1. The data were collected with the LHCb detector at center-of-mass energies of 7 and 8 TeV. The branching fraction of the B0→DÂŻ0K+K- decay is measured relative to that of the decay B0→DÂŻ0π+π- to be B(B0→DÂŻ0K+K-)B(B0→DÂŻ0π+π-)=(6.9±0.4±0.3)%, where the first uncertainty is statistical and the second is systematic. The measured branching fraction of the Bs0→DÂŻ0K+K- decay mode relative to that of the corresponding B0 decay is B(Bs0→DÂŻ0K+K-)B(B0→DÂŻ0K+K-)=(93.0±8.9±6.9)%. Using the known branching fraction of B0→DÂŻ0π+π-, the values of B(B0→DÂŻ0K+K-)=(6.1±0.4±0.3±0.3)×10-5 and B(Bs0→DÂŻ0K+K-)=(5.7±0.5±0.4±0.5)×10-5 are obtained, where the third uncertainties arise from the branching fraction of the decay modes B0→DÂŻ0π+π- and B0→DÂŻ0K+K-, respectively

    Observation of Bs0→Dˉ∗0ϕB_s^0 \to \bar{D}^{*0} \phi and search for B0→Dˉ0ϕB^0 \to \bar{D}^0 \phi decays

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    The first observation of the Bs0→Dˉ∗0ϕB^0_s → \bar{D}^{*0}ϕ decay is reported, with a significance of more than seven standard deviations, from an analysis of pp collision data corresponding to an integrated luminosity of 3  fb−1^{−1}, collected with the LHCb detector at center-of-mass energies of 7 and 8 TeV. The branching fraction is measured relative to that of the topologically similar decay B0→Dˉ0π+π−B^0 → \bar{D}^0 π^+ π^− and is found to be B(Bs0→Dˉ∗0ϕ)=(3.7±0.5±0.3±0.2)×10−5\mathcal{B}(B^0_s → \bar{D}^{*0}ϕ)=(3.7±0.5±0.3±0.2) × 10^{−5}, where the first uncertainty is statistical, the second systematic, and the third from the branching fraction of the B0→Dˉ0π+π−B^0 → \bar{D}^0 π^+ π^− decay. The fraction of longitudinal polarization in this decay is measured to be fL=(73±15±4)%f_L = (73±15±4)\%. The most precise determination of the branching fraction for the Bs0→Dˉ0ϕB^0_s → \bar{D}^{0}ϕ decay is also obtained, B(Bs0→Dˉ0ϕ)=(3.0±0.3±0.2±0.2)×10−5\mathcal{B}(B^0_s → \bar{D}^0 ϕ)=(3.0±0.3±0.2±0.2) × 10^{−5}. An upper limit,B(B0→Dˉ0ϕ)<2.0(2.3)×10−6\mathcal{B}(B^0 → \bar{D}^0 ϕ) < 2.0 (2.3) × 10^{−6} at 90% (95%) confidence level is set. A constraint on the ω−ϕω−ϕ mixing angle ÎŽÎŽ is set at ∣Ύ∣<5.2°|ÎŽ| < 5.2° (5.5°) at 90% (95%) confidence level

    Search for a dimuon resonance in the ΄\Upsilon mass region

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    Search for a dimuon resonance in the ΄\Upsilon mass region

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    Evidence for the decay BS0→K‟∗0ÎŒ+Ό− {B}_S^0\to {\overline{K}}^{\ast 0}{\mu}^{+}{\mu}^{-}

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    International audienceA search for the decay BS0→K‟∗0ÎŒ+Ό− {B}_S^0\to {\overline{K}}^{\ast 0}{\mu}^{+}{\mu}^{-} is presented using data sets corresponding to 1.0, 2.0 and 1.6 fb−1^{−1} of integrated luminosity collected during pp collisions with the LHCb experiment at centre-of-mass energies of 7, 8 and 13 TeV, respectively. An excess is found over the background-only hypothesis with a significance of 3.4 standard deviations. The branching fraction of the BS0→K‟∗0ÎŒ+Ό− {B}_S^0\to {\overline{K}}^{\ast 0}{\mu}^{+}{\mu}^{-} decay is determined to be B(Bs0→K‟∗0ÎŒ+Ό−)=[2.9±1.0(stat)±0.2(syst)±0.3(norm)]×10−8 \mathrm{\mathcal{B}}\left({B}_s^0\to {\overline{K}}^{\ast 0}{\mu}^{+}{\mu}^{-}\right)=\left[2.9\pm 1.0\left(\mathrm{stat}\right)\pm 0.2\left(\mathrm{syst}\right)\pm 0.3\left(\mathrm{norm}\right)\right]\times {10}^{-8} , where the first and second uncertainties are statistical and systematic, respectively. The third uncertainty is due to limited knowledge of external parameters used to normalise the branching fraction measurement
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