72 research outputs found

    Evidence of a J/ψΛJ/\psi\Lambda structure and observation of excited Ξ\Xi^- states in the ΞbJ/ψΛK\Xi^-_b \to J/\psi\Lambda K^- decay

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    First evidence of a structure in the J/ψΛJ/\psi{\Lambda} invariant mass distribution is obtained from an amplitude analysis of ΞbJ/ψΛK\Xi_b^-{\rightarrow}J/\psi{\Lambda}K^- decays. The observed structure is consistent with being due to a charmonium pentaquark with strangeness with a significance of 3.1σ3.1\sigma including systematic uncertainties and look-elsewhere effect. Its mass and width are determined to be 4458.8±2.91.1+4.74458.8\pm2.9^{+4.7}_{-1.1} MeV and 17.3±6.55.7+8.017.3\pm6.5^{+8.0}_{-5.7} MeV, respectively, where the quoted uncertainties are statistical and systematic. The structure is also consistent with being due to two resonances. In addition, the narrow excited Ξ\Xi^- states, Ξ(1690)\Xi(1690)^- and Ξ(1820)\Xi(1820)^-, are seen for the first time in a Ξb\Xi^-_b decay, and their masses and widths are measured with improved precision. The analysis is performed using pppp collision data corresponding to a total integrated luminosity of 9 fb1^{-1}, collected with the LHCb experiment at centre-of-mass energies of 7, 8 and 13 TeV

    Search for long-lived particles decaying to e±μνe^\pm \mu^\mp \nu

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    International audienceLong-lived particles decaying to e±μν{e ^\pm } {\mu ^\mp } {\nu } , with masses between 7 and 50GeV/c250 \,\text {GeV/}c^2 and lifetimes between 2 and 50ps50 \,\text {ps} , are searched for by looking at displaced vertices containing electrons and muons of opposite charges. The search is performed using 5.4fb15.4 \,\text {fb} ^{-1} of ppp p collisions collected with the LHCb detector at a centre-of-mass energy of s=13TeV\sqrt{s} = 13 \,\text {TeV} . Three mechanisms of production of long-lived particles are considered: the direct pair production from quark interactions, the pair production from the decay of a Standard-Model-like Higgs boson with a mass of 125GeV/c2125 \,\text {GeV/}c^2 , and the charged current production from an on-shell WW boson with an additional lepton. No evidence of these long-lived states is obtained and upper limits on the production cross-section times branching fraction are set on the different production modes

    Measurement of CP Violation in the Decay B+K+π0B^{+} \rightarrow K^{+} \pi^{0}

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    International audienceA measurement of CP violation in the decay B+→K+π0 is reported using data corresponding to an integrated luminosity of 5.4  fb-1 collected with the LHCb experiment at a center-of-mass energy of s=13  TeV. The CP asymmetry is measured to be 0.025±0.015±0.006±0.003, where the uncertainties are statistical, systematic, and due to an external input. This is the most precise measurement of this quantity. It confirms and significantly enhances the observed anomalous difference between the direct CP asymmetries of the B+→K+π- and B+→K+π0 decays, known as the Kπ puzzle

    Measurement of differential bb b\overline{b} - and cc c\overline{c} -dijet cross-sections in the forward region of pppp collisions at s \sqrt{s} = 13 TeV

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    Observation of a new Ξb0\Xi_b^0 state

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    International audienceUsing a proton-proton collision data sample collected by the LHCb experiment, corresponding to an integrated luminosity of 8.5  fb-1, the observation of a new excited Ξb0 resonance decaying to the Ξb-π+ final state is presented. The state, referred to as Ξb(6227)0, has a measured mass and natural width of m(Ξb(6227)0)=6227.1-1.5+1.4±0.5  MeV and Γ(Ξb(6227)0)=18.6-4.1+5.0±1.4  MeV, where the uncertainties are statistical and systematic. The production rate of the Ξb(6227)0 state relative to that of the Ξb- baryon in the kinematic region 2<η<5 and pT<30  GeV is measured to be fΞb(6227)0fΞb-B(Ξb(6227)0→Ξb-π+)=0.045±0.008±0.004, where B(Ξb(6227)0→Ξb-π+) is the branching fraction of the decay, and fΞb(6227)0 and fΞb- represent fragmentation fractions. Improved measurements of the mass and natural width of the previously observed Ξb(6227)- state, along with the mass of the Ξb- baryon, are also reported. Both measurements are significantly more precise than, and consistent with, previously reported values

    Search for long-lived particles decaying to e±μνe^\pm \mu^\mp \nu

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    Long-lived particles decaying to e±μν{e ^\pm } {\mu ^\mp } {\nu } , with masses between 7 and 50GeV/c250 \,\text {GeV/}c^2 and lifetimes between 2 and 50ps50 \,\text {ps} , are searched for by looking at displaced vertices containing electrons and muons of opposite charges. The search is performed using 5.4fb15.4 \,\text {fb} ^{-1} of ppp p collisions collected with the LHCb detector at a centre-of-mass energy of s=13TeV\sqrt{s} = 13 \,\text {TeV} . Three mechanisms of production of long-lived particles are considered: the direct pair production from quark interactions, the pair production from the decay of a Standard-Model-like Higgs boson with a mass of 125GeV/c2125 \,\text {GeV/}c^2 , and the charged current production from an on-shell WW boson with an additional lepton. No evidence of these long-lived states is obtained and upper limits on the production cross-section times branching fraction are set on the different production modes

    Spectroscopy in beauty decays at the LHCb experiment

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    The beauty hadron decays is unique laboratory to study charmonium and charmonium-like states, such as the χc1(3872)\chi_{c1}(3872) meson, other exotic states and the tensor DD-wave Ψ2(3823)\Psi_2(3823) states. However the nature of many exotic charmonium-like candidates are still unknown. The most recent LHCb results related to b-hadron decays to charmonium states and obtained using large data samples collected during the Run 1 and Run 2 periods are presented. This includes the most precise determination of the mass and width of the χc1(3872)\chi_{c1}(3872) state using the B+J/ψπ+πK+B^{+} \to J/\psi\pi^{+}\pi^{-}K^{+} decays, observation of a resonant structure denoted as X(4740) in the JψϕJ\psi \phi mass spectrum from Bs0J/ψπ+πK+KB^{0}_{s} \to J/\psi\pi^{+}\pi^{-}K^{+}K^{-} decays and the precise measurement of the Bs0B^{0}_{s}~meson mass.The beauty hadron decays is unique laboratory to study charmonium and charmonium-like states, such as the χc1(3872)\chi_{c1}(3872) meson, other exotic states and the tensor D-wave ψ2(3823\psi_2(3823) states. However the nature of many exotic charmonium-like candidates are still unknown. The most recent LHCb results related to b-hadron decays to charmonium states and obtained using large data samples collected during the Run 1 and Run 2 periods are presented. This includes the most precise determination of the mass and width of the χc1(3872)\chi_{c1}(3872) state using the B+J/ψπ+πK+B^{+} \to J/\psi\pi^{+}\pi^{-}K^{+} decays, observation of a resonant structure denoted as X(4740) in the J/ψϕJ/\psi \phi mass spectrum from Bs0J/ψπ+πK+KB^{0}_{s} \to J/\psi\pi^{+}\pi^{-}K^{+}K^{-} decays and the precise measurement of the Bs0B^{0}_{s} meson mass

    Observation of the Λb0Λc+K+Kπ\Lambda^0_b \to \Lambda^+_c K^+ K^- \pi^- decay

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    International audienceThe Λb0→Λc+K+K−π− decay is observed for the first time using a data sample of proton-proton collisions at centre-of-mass energies of s=7 and 8TeV collected by the LHCb detector, corresponding to an integrated luminosity of 3fb−1 . The ratio of branching fractions between the Λb0→Λc+K+K−π− and the Λb0→Λc+Ds− decays is measured to be B(Λb0→Λc+K+K−π−)B(Λb0→Λc+Ds−)=(9.26±0.29±0.46±0.26)×10−2, where the first uncertainty is statistical, the second systematic and the third is due to the knowledge of the Ds−→K+K−π− branching fraction. No structure on the invariant mass distribution of the Λc+K+ system is found, consistent with no open-charm pentaquark signature

    Search for the rare decay B0J/ψϕB^0 \rightarrow J/\psi \phi

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    International audienceA search for the rare decay is performed using collision data collected with the LHCb dete-ctor at centre-of-mass energies of 7, 8 and 13 TeV, corresponding to an integrated luminosity of 9 fb−1. No significant signal of the decay is observed and an upper limit of at 90% confidence level is set on the branching fraction

    Branching Fraction Measurements of the Rare Bs0ϕμ+μB^0_s\rightarrow\phi\mu^+\mu^- and Bs0f2(1525)μ+μB^0_s\rightarrow f_2^\prime(1525)\mu^+\mu^- Decays

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    The branching fraction of the rare Bs0ϕμ+μB^0_s\rightarrow\phi\mu^+\mu^- decay is measured using data collected by the LHCb experiment at center-of-mass energies of 7, 8, and 13 TeV, corresponding to integrated luminosities of 1, 2, and 6 fb1^{-1}, respectively. The branching fraction is reported in intervals of q2^2, the square of the dimuon invariant mass. In the q2^2 region between 1.1 and 6.0 GeV2^2/c4^4, the measurement is found to lie 3.6 standard deviations below a standard model prediction based on a combination of light cone sum rule and lattice QCD calculations. In addition, the first observation of the rare Bs0f2(1525)μ+μB^0_s\rightarrow f_2^\prime(1525)\mu^+\mu^- decay is reported with a statistical significance of 9 standard deviations and its branching fraction is determined
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