553 research outputs found

    Search for Bc+→π+ÎŒ+Ό−B_c^+\to\pi^+\mu^+\mu^- decays and measurement of the branching fraction ratio B(Bc+→ψ(2S)π+)/B(Bc+→J/ψπ+){\cal B}(B_c^+\to\psi(2S)\pi^+)/{\cal B}(B_c^+\to J/\psi \pi^+)

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    International audienceThe first search for nonresonant Bc+→π+ÎŒ+Ό−B_c^+\to\pi^+\mu^+\mu^- decays is reported. The analysis uses proton-proton collision data collected with the LHCb detector between 2011 and 2018, corresponding to an integrated luminosity of 9 fb−1^{-1}. No evidence for an excess of signal events over background is observed and an upper limit is set on the branching fraction ratio B(Bc+→π+ÎŒ+Ό−)/B(Bc+→J/ψπ+)<2.1×10−4{\cal B}(B_c^+\to\pi^+\mu^+\mu^-)/{\cal B}(B_c^+\to J/\psi \pi^+) < 2.1\times 10^{-4} at 90%90\% confidence level. Additionally, an updated measurement of the ratio of the Bc+→ψ(2S)π+B_c^+\to\psi(2S)\pi^+ and Bc+→J/ψπ+B_c^+\to J/\psi \pi^+ branching fractions is reported. The ratio B(Bc+→ψ(2S)π+)/B(Bc+→J/ψπ+){\cal B}(B_c^+\to\psi(2S)\pi^+)/{\cal B}(B_c^+\to J/\psi \pi^+) is measured to be 0.254±0.018±0.003±0.0050.254\pm 0.018 \pm 0.003 \pm 0.005, where the first uncertainty is statistical, the second systematic, and the third is due to the uncertainties on the branching fractions of the leptonic J/ψJ/\psi and ψ(2S)\psi(2S) decays. This measurement is the most precise to date and is consistent with previous LHCb results

    A model-independent measurement of the CKM angle Îł\gamma in partially reconstructed B±→D∗h±B^{\pm} \to D^{*} h^{\pm} decays with D→KS0h+h−D \to K_{S}^{0} h^{+}h^{-}(h=π,K)(h=\pi, K)

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    International audienceA measurement of C ⁣PC\!P-violating observables in B±→D∗K±B^{\pm} \to D^{*} K^{\pm} and B±→D∗π±B^{\pm} \to D^{*} \pi^{\pm} decays is made where the photon or neutral pion from the D∗→DÎłD^{*} \to D\gamma or D∗→Dπ0D^{*} \to D\pi^{0} decay is not reconstructed. The DD meson is reconstructed in the self-conjugate decay modes, D→KS0π+π−D \to K_{S}^{0} \pi^{+} \pi^{-} or D→KS0K+K−D \to K_{S}^{0} K^{+} K^{-}. The distribution of signal yields in the DD decay phase space is analysed in a model-independent way. The measurement uses a data sample collected in proton-proton collisions at centre-of-mass energies of 7, 8, and 13 TeV, corresponding to a total integrated luminosity of approximately 9 fb−1^{-1}. The B±→D∗K±B^{\pm} \to D^{*} K^{\pm} and B±→D∗π±B^{\pm} \to D^{*} \pi^{\pm}C ⁣PC\!P-violating observables are interpreted in terms of hadronic parameters and the CKM angle Îł\gamma, resulting in a measurement of Îł=(92−17+21)∘\gamma = (92^{+21}_{-17})^{\circ}. The total uncertainty includes the statistical and systematic uncertainties, and the uncertainty due to external strong-phase inputs

    Observation of strangeness enhancement with charmed mesons in high-multiplicity pPbp\mathrm{Pb} collisions at sNN=8.16 \sqrt {s_{\mathrm{NN}}}=8.16\,TeV

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    International audienceThe production of prompt Ds+D^+_{s} and D+D^+ mesons is measured by the LHCb experiment in proton-lead (pPbp\mathrm{Pb}) collisions in both the forward (1.5<y∗<4.01.5<y^*<4.0) and backward (−5.0<y∗<−2.5-5.0<y^*<-2.5) rapidity regions at a nucleon-nucleon center-of-mass energy of sNN=8.16 \sqrt {s_{\mathrm{NN}}}=8.16\,TeV. The nuclear modification factors of both Ds+D^+_{s} and D+D^+ mesons are determined as a function of transverse momentum, pTp_{\mathrm{T}}, and rapidity. In addition, the Ds+D^+_{s} to D+D^+ cross-section ratio is measured as a function of the charged particle multiplicity in the event. An enhanced Ds+D^+_{s} to D+D^+ production in high-multiplicity events is observed for the whole measured pTp_{\mathrm{T}} range, in particular at low pTp_{\mathrm{T}} and backward rapidity, where the significance exceeds six standard deviations. This constitutes the first observation of strangeness enhancement in charm quark hadronization in high-multiplicity pPbp\mathrm{Pb} collisions. The results are also qualitatively consistent with the presence of quark coalescence as an additional charm quark hadronization mechanism in high-multiplicity proton-lead collisions

    Search for CP\textit{CP} violation in the phase space of D0→KS0K±π∓D^{0} \rightarrow K_{S}^{0} K^{\pm} \pi^{\mp} decays with the energy test

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    A search for CP violation in D0→KS0K+π−D^{0} \rightarrow K_{S}^{0} K^{+} \pi^{-} and D0→KS0K−π+D^{0} \rightarrow K_{S}^{0} K^{-} \pi^{+} decays is reported. The search is performed using an unbinned model-independent method known as the energy test that probes local CP violation in the phase space of the decays. The data analysed correspond to an integrated luminosity of 5.4 5.4~fb−1^{-1} collected in proton-proton collisions by the LHCb experiment at a centre-of-mass energy of s=13 \sqrt{s}=13~TeV, amounting to approximately 950 000 and 620 000 signal candidates for the D0→KS0K−π+D^{0} \rightarrow K_{S}^{0} K^{-} \pi^{+} and D0→KS0K+π−D^{0} \rightarrow K_{S}^{0} K^{+} \pi^{-} modes, respectively. The method is validated using D0→K−π+π−π+D^{0} \rightarrow K^{-} \pi^{+} \pi^{-} \pi^{+} and D0→KS0π+π−D^{0} \rightarrow K_{S}^{0} \pi^{+} \pi^{-} decays, where CP-violating effects are expected to be negligible, and using background-enhanced regions of the signal decays. The results are consistent with CP symmetry in both the D0→KS0K−π+D^{0} \rightarrow K_{S}^{0} K^{-} \pi^{+} and the D0→KS0K+π−D^{0} \rightarrow K_{S}^{0} K^{+} \pi^{-} decays, with pp-values for the hypothesis of no CP violation of 70%70\% and 66%66\%, respectively.A search for CP\textit{CP} violation in D0→KS0K+π−D^{0} \rightarrow K_{S}^{0} K^{+} \pi^{-} and D0→KS0K−π+D^{0} \rightarrow K_{S}^{0} K^{-} \pi^{+} decays is reported. The search is performed using an unbinned model-independent method known as the energy test that probes local CP\textit{CP} violation in the phase space of the decays. The data analysed correspond to an integrated luminosity of 5.4 5.4~fb−1^{-1} collected in proton-proton collisions by the LHCb experiment at a centre-of-mass energy of s=13\sqrt{s}=13~TeV, amounting to approximately 950000 and 620000 signal candidates for the D0→KS0K−π+D^{0} \rightarrow K_{S}^{0} K^{-} \pi^{+} and D0→KS0K+π−D^{0} \rightarrow K_{S}^{0} K^{+} \pi^{-} modes, respectively. The method is validated using D0→K−π+π−π+D^{0} \rightarrow K^{-} \pi^{+} \pi^{-} \pi^{+} and D0→KS0π+π−D^{0} \rightarrow K_{S}^{0} \pi^{+} \pi^{-} decays, where CP\textit{CP}-violating effects are expected to be negligible, and using background-enhanced regions of the signal decays. The results are consistent with CP\textit{CP} symmetry in both the D0→KS0K−π+D^{0} \rightarrow K_{S}^{0} K^{-} \pi^{+} and the D0→KS0K+π−D^{0} \rightarrow K_{S}^{0} K^{+} \pi^{-} decays, with pp-values for the hypothesis of no CP\textit{CP} violation of 70% and 66%, respectively

    Observation of the Bc+→J/ψπ+π0B_c^+ \to J/\psi \pi^+ \pi^0 decay

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    The first observation of the Bc+→J/ψπ+π0B_c^+ \to J/\psi \pi^+ \pi^0 decay is reported with high significance using proton-proton collision data, corresponding to an integrated luminosity of 9 fb−1^{-1}, collected with the LHCb detector at centre-of-mass energies of 7, 8, and 13 TeV. The ratio of its branching fraction relative to the Bc+→J/ψπ+B_c^+ \to J/\psi \pi^+ channel is measured to be B(Bc+→J/ψπ+π0)B(Bc+→J/ψπ+)=2.80±0.15±0.11±0.16 , \frac{ {\cal{B}}_{( B_c^+ \to J/\psi \pi^+\pi^0 ) }} { {\cal{B}}_{( B_c^+ \to J/\psi \pi^+ ) }} = 2.80 \pm 0.15 \pm 0.11 \pm 0.16 \,, where the first uncertainty is statistical, the second systematic and the third related to imprecise knowledge of the branching fractions for B+→J/ψK∗+B^+ \to J/\psi K^{*+} and B+→J/ψK+B^+ \to J/\psi K^+ decays, which are used to determine the π0\pi^0 detection efficiency. The π+π0\pi^+\pi^0 mass spectrum is found to be consistent with the dominance of an intermediate ρ+\rho^+ contribution in accordance with a model based on QCD factorisation.The first observation of the Bc+→J/ψπ+π0 {B}_c^{+}\to J/\psi {\pi}^{+}{\pi}^0 decay is reported with high significance using proton-proton collision data, corresponding to an integrated luminosity of 9 fb−1^{−1}, collected with the LHCb detector at centre-of-mass energies of 7, 8, and 13 TeV. The ratio of its branching fraction relative to the Bc+→J/ψπ+ {B}_c^{+}\to J/\psi {\pi}^{+} channel is measured to beBBc+→J/ψπ+π0BBc+→J/ψπ+=2.80±0.15±0.11±0.16, \frac{{\mathcal{B}}_{B_c^{+}\to J/\psi {\pi}^{+}{\pi}^0}}{{\mathcal{B}}_{B_c^{+}\to J/\psi {\pi}^{+}}}=2.80\pm 0.15\pm 0.11\pm 0.16, where the first uncertainty is statistical, the second systematic and the third related to imprecise knowledge of the branching fractions for B+^{+} → J/ψK∗+^{*+} and Bc+→J/ψπ+ {B}_c^{+}\to J/\psi {\pi}^{+} decays, which are used to determine the π0^{0} detection efficiency. The π+^{+}π0^{0} mass spectrum is found to be consistent with the dominance of an intermediate ρ+^{+} contribution in accordance with a model based on QCD factorisation.[graphic not available: see fulltext]The first observation of the Bc+→J/ψπ+π0B_c^+ \to J/\psi \pi^+ \pi^0 decay is reported with high significance using proton-proton collision data, corresponding to an integrated luminosity of 9fb−1^{-1}, collected with the LHCb detector at centre-of-mass energies of 7, 8, and 13 TeV. The ratio of its branching fraction relative to the Bc+→J/ψπ+B_c^+ \to J/\psi \pi^+ channel is measured to be B(Bc+→J/ψπ+π0)B(Bc+→J/ψπ+)=2.80±0.15±0.11±0.16 , \frac{ {\cal{B}}( B_c^+ \to J/\psi \pi^+\pi^0 ) } { {\cal{B}}( B_c^+ \to J/\psi \pi^+ ) } = 2.80 \pm 0.15 \pm 0.11 \pm 0.16 \,, where the first uncertainty is statistical, the second systematic and the third related to imprecise knowledge of the branching fractions for B+→J/ψK∗+B^+ \to J/\psi K^{*+} and B+→J/ψK+B^+ \to J/\psi K^+ decays, which are used to determine the π0\pi^0 detection efficiency. The π+π0\pi^+\pi^0 mass spectrum is found to be consistent with the dominance of an intermediate ρ+\rho^+ contribution in accordance with a model based on QCD factorisation

    First observation of the Λb0→D+D−Λ\Lambda^0_b \to D^+ D^- \Lambda decay

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    International audienceThe Λb0→D+D−Λ\Lambda^0_b \to D^+ D^- \Lambda decay is observed for the first time using proton-proton collision data collected by the LHCb experiment at a center-of-mass energy of 13TeV13 \mathrm{TeV}, corresponding to an integrated luminosity of 5.3fb−15.3 \mathrm{fb}^{-1}. Using the B0→D+D−KS0B^0 \to D^+ D^- K_{\mathrm{S}}^0 decay as a reference channel, the product of the relative production cross-section and decay branching fractions is measured to be R=σΛb0σB0×B(Λb0→D+D−Λ)B(B0→D+D−KS0)=0.179±0.022±0.014 {\cal R}=\frac{\sigma_{\Lambda^0_b}}{\sigma_{B^0}} \times \frac{{\cal B}(\Lambda^0_b \to D^+ D^- \Lambda)}{{\cal B}(B^0 \to D^+ D^- K_{\mathrm{S}}^0)}=0.179 \pm 0.022 \pm 0.014 where the first uncertainty is statistical and the second is systematic. The known branching fraction of the reference channel, B(B0→D+D−KS0){\cal B}(B^0 \to D^+ D^- K_{\mathrm{S}}^0), and the cross-section ratio, σΛb0/σB0\sigma_{\Lambda^0_b} / \sigma_{B^0}, previously measured by LHCb\mathrm{LHCb} are used to derive the branching fraction of the Λb0→D+D−Λ\Lambda^0_b \to D^+ D^- \Lambda decay B(Λb0→D+D−Λ)=(1.24±0.15±0.10±0.28±0.11)×10−4, {\cal B}(\Lambda^0_b \to D^+ D^- \Lambda)=(1.24 \pm 0.15 \pm 0.10 \pm 0.28 \pm 0.11) \times 10^{-4}, where the third and fourth contributions are due to uncertainties of B(B0→D+D−KS0){\cal B}(B^0 \to D^+ D^- K_{\mathrm{S}}^0) and σΛb0/σB0\sigma_{\Lambda^0_b} / \sigma_{B^0}, respectively. Inspection of the D+ΛD^+ \Lambda and D+D−D^+ D^- invariant-mass distributions suggests a rich presence of intermediate resonances in the decay. The Λb0→D∗+D−Λ\Lambda^0_b \to D^{*+} D^- \Lambda decay is also observed for the first time as a partially reconstructed component in the D+D−ΛD^+ D^- \Lambda invariant mass spectrum

    Fraction of χc\chi_c decays in prompt J/ψJ/\psi production measured in pPb collisions at sNN=8.16\sqrt{s_{NN}}=8.16 TeV

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    International audienceThe fraction of χc1\chi_{c1} and χc2\chi_{c2} decays in the prompt J/ψJ/\psi yield, Fχc=σχc→J/ψ/σJ/ψF_{\chi c}=\sigma_{\chi_c \to J/\psi}/\sigma_{J/\psi}, is measured by the LHCb detector in pPb collisions at sNN=8.16\sqrt{s_{NN}}=8.16 TeV. The study covers the forward (1.5<y∗<4.01.5<y^*<4.0) and backward (−5.0<y∗<−2.5-5.0<y^*<-2.5) rapidity regions, where y∗y^* is the J/ψJ/\psi rapidity in the nucleon-nucleon center-of-mass system. Forward and backward rapidity samples correspond to integrated luminosities of 13.6 ±\pm 0.3 nb−1^{-1} and 20.8 ±\pm 0.5 nb−1^{-1}, respectively. The result is presented as a function of the J/ψJ/\psi transverse momentum pT,J/ψp_{T,J/\psi} in the range 1<pT,J/ψ<20<p_{T, J/\psi}<20 GeV/cc. The FχcF_{\chi c} fraction at forward rapidity is compatible with the LHCb measurement performed in pppp collisions at s=7\sqrt{s}=7 TeV, whereas the result at backward rapidity is 2.4 σ\sigma larger than in the forward region for 1<pT,J/ψ<31<p_{T, J/\psi}<3 GeV/cc. The increase of FχcF_{\chi c} at low pT,J/ψp_{T, J/\psi} at backward rapidity is compatible with the suppression of the ψ\psi(2S) contribution to the prompt J/ψJ/\psi yield. The lack of in-medium dissociation of χc\chi_c states observed in this study sets an upper limit of 180 MeV on the free energy available in these pPb collisions to dissociate or inhibit charmonium state formation

    Search for time-dependent CPCP violation in D0→π+π−π0D^0 \rightarrow \pi^+ \pi^- \pi^0 decays

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    International audienceA measurement of time-dependent CPCP violation in D0→π+π−π0D^0 \rightarrow \pi^+ \pi^- \pi^0 decays using a pppp collision data sample collected by the LHCb experiment in 2012 and from 2015 to 2018, corresponding to an integrated luminosity of 7.7 fb−1\,\mathrm{fb}^{-1}, is presented. The initial flavour of each D0D^0 candidate is determined from the charge of the pion produced in the D∗(2010)+→D0π+D^*(2010)^+ \rightarrow D^0 \pi^+ decay. The decay D0→K−π+π0D^0 \rightarrow K^- \pi^+ \pi^0 is used as a control channel to validate the measurement procedure. The gradient of the time-dependent CPCP asymmetry, ΔY\Delta Y, in D0→π+π−π0D^0 \rightarrow \pi^+ \pi^- \pi^0 decays is measured to be \begin{equation*} \Delta Y = (-1.3 \pm 6.3 \pm 2.4) \times 10^{-4}, \end{equation*} where the first uncertainty is statistical and the second is systematic, which is compatible with CPCP conservation

    Study of charmonium production via the decay to ppˉp\bar{p} at s=13 TeV\sqrt{s} = 13\,\rm{TeV}

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    Charmonium production cross-section in proton-proton collisions is measured at the centre-of-mass energy s=13 TeV\sqrt{s}=13\,\rm{TeV} using decays to ppˉp\bar{p} final state. The study is performed using a data sample corresponding to an integrated luminosity of 2.2 fb−12.2\,\rm{fb}^{-1} collected in 2018 with the \mbox{LHCb} detector. The production cross-section of the ηc\eta_c meson is measured in a rapidity range of 2.0<y<4.02.0 < y < 4.0 and in a transverse momentum range of 5.0<pT<20.0 GeV ⁣/ ⁣c5.0 < p_{\rm{T}} < 20.0\,\rm{GeV\!/\!\it{c}}, which is extended compared with previous \mbox{LHCb} analyses. The differential cross-section is measured in bins of pTp_{\rm{T}} and, for the first time, of yy. Upper limits, at 90% and 95% confidence levels, on the ηc(2S)\eta_c(2S) and hc(1P)h_c(1P) prompt production cross-sections are determined for the first time.Charmonium production cross-section in proton-proton collisions is measured at the centre-of-mass energy s=13 TeV\sqrt{s}=13\,TeV using decays to ppˉp\bar{p} final state. The study is performed using a data sample corresponding to an integrated luminosity of 2.2 fb−12.2\,{fb}^{-1} collected in 2018 with the LHCbLHCb detector. The production cross-section of the ηc\eta_c meson is measured in a rapidity range of 2.0<y<4.02.0 < y < 4.0 and in a transverse momentum range of 5.0<pT<20.0 GeV/c5.0 < p_{T} < 20.0\,{GeV/\it{c}}, which is extended compared with previous LHCbLHCb analyses. The differential cross-section is measured in bins of pTp_{T} and, for the first time, of yy. Upper limits, at 90% and 95% confidence levels, on the ηc(2S)\eta_c(2S) and hc(1P)h_c(1P) prompt production cross-sections are determined for the first time

    Measurement of exclusive J/ψJ/\psi and ψ(2S)\psi(2S) production at s=13\sqrt{s}=13 TeV

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    International audienceMeasurements are presented of the cross-section for the central exclusive production of J/ψ→Ό+Ό−J/\psi\to\mu^+\mu^- and ψ(2S)→Ό+Ό−\psi(2S)\to\mu^+\mu^- processes in proton-proton collisions at s=13\sqrt{s} = 13 TeV with 2016-2018 data. They are performed by requiring both muons to be in the LHCb acceptance (with pseudorapidity 2<ηΌ±<4.52<\eta_{\mu^\pm} < 4.5) and mesons in the rapidity range 2.0<y<4.52.0 < y < 4.5. The integrated cross-section results are \begin{equation*} \sigma_{J/\psi\to\mu^+\mu^-}(2.0<y_{J/\psi}<4.5,2.0<\eta_{\mu^\pm} < 4.5) = 400 \pm 2 \pm 5 \pm 12 \,{\rm pb}\,, \end{equation*}\begin{equation*} \sigma_{\psi(2S)\to\mu^+\mu^-}(2.0<y_{\psi(2S)}<4.5,2.0<\eta_{\mu^\pm} < 4.5) = 9.40 \pm 0.15 \pm 0.13 \pm 0.27 \,{\rm pb}\,, \end{equation*} where the uncertainties are statistical, systematic and due to the luminosity determination. In addition, a measurement of the ratio of ψ(2S)\psi(2S) and J/ψJ/\psi cross-sections, at an average photon-proton centre-of-mass energy of 1 TeV, is performed, giving \begin{equation*} \frac{\sigma_{\psi(2S)}}{\sigma_{J/\psi}} = 0.1763 \pm 0.0029 \pm 0.0008 \pm 0.0039 \,, \end{equation*} where the first uncertainty is statistical, the second systematic and the third due to the knowledge of the involved branching fractions. For the first time, the dependence of the J/ψJ/\psi and ψ(2S)\psi(2S) cross-sections on the total transverse momentum transfer is determined in pppp collisions and is found consistent with the behaviour observed in electron-proton collisions
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