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  1. A<sc>bstract</sc> An angular analysis ofB0→ K*0e+edecays is presented using proton-proton collision data collected by the LHCb experiment at centre-of-mass energies of 7, 8 and 13 TeV, corresponding to an integrated luminosity of 9 fb−1. The analysis is performed in the region of the dilepton invariant mass squared of 1.1–6.0 GeV2/c4. In addition, a test of lepton flavour universality is performed by comparing the obtained angular observables with those measured inB0→ K*0μ+μdecays. In general, the angular observables are found to be consistent with the Standard Model expectations as well as with global analyses of otherb → sℓ+processes, whereℓis either a muon or an electron. No sign of lepton-flavour-violating effects is observed. 
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  2. The branching fraction of the decay B+ψ(2S)ϕ(1020)K+ , relative to the topologically similar decay B+J/ψϕ(1020)K+ , is measured using proton-proton collision data collected by the LHCb experiment at center-of-mass energies of 7, 8, and 13 TeV, corresponding to an integrated luminosity of 9fb1 . The ratio is found to be 0.061±0.004±0.009 , where the first uncertainty is statistical and the second systematic. Using the world-average branching fraction for B+J/ψϕ(1020)K+ , the branching fraction for the decay B+ψ(2S)ϕ(1020)K+ is found to be (3.0±0.2±0.5±0.2)×106 , where the first uncertainty is statistical, the second systematic, and the third is due to the branching fraction of the normalization channel. © 2025 CERN, for the LHCb Collaboration2025CERN 
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  3. A search for CP violation in Λb0pK and Λb0pπ decays is presented using the full Run 1 and Run 2 data samples of pp collisions collected with the LHCb detector, corresponding to an integrated luminosity of 9fb1 at center-of-mass energies of 7, 8, and 13 TeV. For the Run 2 data sample, the CP -violating asymmetries are measured to be ACPpK =(1.4±0.7±0.4)% and ACPpπ =(0.4±0.9±0.4)% , where the first uncertainty is statistical and the second is systematic. Following significant improvements in the evaluation of systematic uncertainties compared to the previous LHCb measurement, the Run 1 dataset is reanalyzed to update the corresponding results. When combining the Run 2 and updated Run 1 measurements, the final results are found to be ACPpK =(1.1±0.7±0.4)% and ACPpπ =(0.2±0.8±0.4)% , constituting the most precise measurements of these asymmetries to date. © 2025 CERN, for the LHCb Collaboration2025CERN 
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  4. A study is presented of B+KS0Kπ+K+ and B+KS0K+πK+ decays based on the analysis of proton-proton collision data collected with the LHCb detector at center-of-mass energies of 7, 8 and 13 TeV, corresponding to an integrated luminosity of 9fb1 . The KS0Kπ invariant-mass distributions of both B+ decay modes show, in the m( KS0Kπ )<1.85GeV mass region, large activity which is resolved using an amplitude analysis. A simple model, where JPC amplitudes are described by multiple Breit-Wigner functions with appropriate angular distributions, provides a good description of the experimental data. In this approach a complex mixture of JPC=0+ , 1++ and 1+ amplitudes is observed that is dominated by η(1405) , η(1470) , η(1760) , f1(1285) , f1(1420) and h1(1405) resonances. The KS0Kπ Dalitz plots are dominated by asymmetric crossing K*K¯ bands which are different for the two B+ decay modes. This is due to a different interference pattern between the 1++ and 1+ amplitudes in the two channels. Branching fractions are measured for each resonant contribution. © 2025 CERN, for the LHCb Collaboration2025CERN 
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  5. The first test of lepton flavor universality between muons and electrons using B+K+π+π+ ( =e , μ ) decays is presented. The measurement is performed with data from proton-proton collisions collected by the LHCb experiment at center-of-mass energies of 7, 8, and 13 TeV, corresponding to an integrated luminosity of 9fb1 . The ratio of branching fractions between B+K+π+πe+e and B+K+π+πμ+μ decays is measured in the dilepton invariant-mass-squared range 1.1<q2<7.0GeV2/c4 and is found to be RKππ1 =1.3 10.17+0.18 (stat) 0.09+0.12 (syst) , in agreement with the standard model prediction. The first observation of the B+K+π+πe+e decay is also reported. © 2025 CERN, for the LHCb Collaboration2025CERN 
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  6. Abstract This paper presents the first measurement of$$\psi {(2S)}$$ ψ(2S) and$$\chi _{c1}(3872)$$ χc1 (3872) meson production within fully reconstructed jets. Each quarkonium state (tag) is reconstructed via its decay to the$${{J \hspace{-1.66656pt}/\hspace{-1.111pt}\psi }} $$ J/ψ ($$\rightarrow $$ $$\mu ^+\mu ^-$$ μ+μ- )$$\pi ^+\pi ^-$$ π+π- final state in the forward region using proton-proton collision data collected by the LHCb experiment at the center-of-mass-energy of$$13\text {TeV} $$ 13TeV in 2016, corresponding to an integrated luminosity of$$1.64\,\text {\,fb} ^{-1} $$ 1.64\,fb-1 . The fragmentation function, presented as the ratio of the quarkonium-tag transverse momentum to the full jet transverse momentum ($$p_{\textrm{T}} (\text {tag})/p_{\textrm{T}} (\text {jet})$$ pT(tag)/pT(jet) ), is measured differentially in$$p_{\textrm{T}} (\text {jet})$$ pT(jet) and$$p_{\textrm{T}} (\text {tag})$$ pT(tag) bins. The distributions are separated into promptly produced quarkonia from proton-proton collisions and quarkonia produced from displacedb-hadron decays. While the displaced quarkonia fragmentation functions are in general well described by parton-shower predictions, the prompt quarkonium distributions differ significantly from fixed-order non-relativistic QCD (NRQCD) predictions followed by a QCD parton shower. 
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  7. A search for D0 meson decays to the π+πe+e and K+Ke+e final states is reported using a sample of proton-proton collisions collected by the LHCb experiment at a center-of-mass energy of 13 TeV, corresponding to an integrated luminosity of 6fb1 . The decay D0π+πe+e is observed for the first time when requiring that the two electrons are consistent with coming from the decay of a ϕ or ρ0/ω meson. The corresponding branching fractions are measured relative to the D0Kπ[e+e ]ρ0/ω decay, where the two electrons are consistent with coming from the decay of a ρ0 or ω meson. No evidence is found for the D0K+Ke+e decay and world-best limits are set on its branching fraction. The results are compared to, and found to be consistent with, the branching fractions of the D0π+πμ+μ and D0K+Kμ+μ decays recently measured by LHCb and confirm lepton universality at the current precision. © 2025 CERN, for the LHCb Collaboration2025CERN 
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  8. A<sc>bstract</sc> TheΥ(2S) andΥ(3S) production cross-sections are measured relative to that of theΥ(1S) meson, as a function of charged-particle multiplicity in proton-proton collisions at a centre-of-mass energy of 13 TeV. The measurement uses data collected by the LHCb experiment in 2018 corresponding to an integrated luminosity of 2 fb−1. Both theΥ(2S)-to-Υ(1S) andΥ(3S)-to-Υ(1S) cross-section ratios are found to decrease significantly as a function of event multiplicity, with theΥ(3S)-to-Υ(1S) ratio showing a steeper decline towards high multiplicity. This hierarchy is qualitatively consistent with the comover model predictions, indicating that final-state interactions play an important role in bottomonia production in high-multiplicity events. 
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  9. An amplitude analysis of BDD0 KS0 decays is performed using proton-proton collision data, corresponding to an integrated luminosity of 9fb1 , collected with the LHCb detector at center-of-mass energies of 7, 8, and 13 TeV. A resonant structure of spin-parity 0+ is observed in the D0KS0 invariant-mass spectrum with a significance of 5.3σ . The mass and width of the state, modeled with a Breit-Wigner line shape, are determined to be 2883±11±8MeV/c2 and 8747+22 ±17MeV , respectively, where the first uncertainties are statistical and the second systematic. These properties and the quark content are consistent with those of the open-charm tetraquark candidate Tcs0* (2870)0 observed previously in the D+K final state of the BDD+K decay. This result confirms the existence of the Tcs0* (2870)0 state in a new decay mode. The Tcs1* (2900)0 state, reported in the BDD+K decay, is also searched for in the D0KS0 invariant-mass spectrum of the BDD0KS0 decay, without finding evidence for it. © 2025 CERN, for the LHCb Collaboration2025CERN 
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  10. Lepton flavor universality in rare bs transitions is tested for the first time using Bs0 meson decays. The measurements are performed using pp collision data collected by the LHCb experiment between 2011 and 2018, corresponding to a total integrated luminosity of 9fb1 . Branching fraction ratios between the Bs0 ϕe+e and Bs0ϕμ+μ decays are measured in three regions of dilepton mass squared, q2 , with 0.1<q2<1.1 , 1.1<q2<6.0 , and 15<q2<19GeV2/c4 . The results agree with the standard model expectation of lepton flavor universality. © 2025 CERN, for the LHCb Collaboration2025CERN 
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