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  1. A<sc>bstract</sc> This paper presents a study of the charmless three-body decays$$ {B}_{(s)}^0\to {K}_{\mathrm{S}}^0{h}^{+}h{\prime}^{-} $$ Bs0 KS0h+h (whereh()=π, K), using a sample ofppcollision data collected by the LHCb experiment during Runs 1 and 2 of the LHC, corresponding to an integrated luminosity of 9 fb−1. The decay$$ {B}_s^0\to {K}_{\mathrm{S}}^0{K}^{+}{K}^{-} $$ Bs0KS0K+K is observed for the first time, and the following ratios of branching fractions are measured:$$ {\displaystyle \begin{array}{l}\frac{\mathcal{B}\left({B}^0\to {K}_{\mathrm{S}}^0{K}^{+}{K}^{-}\right)}{\mathcal{B}\left({B}^0\to {K}_{\mathrm{S}}^0{\pi}^{+}{\pi}^{-}\right)}=0.578\pm 0.007\pm 0.017,\\ {}\frac{\mathcal{B}\left({B}^0\to {K}_{\mathrm{S}}^0{K}^{\pm }{K}^{\mp}\right)}{\mathcal{B}\left({B}^0\to {K}_{\mathrm{S}}^0{\pi}^{+}{\pi}^{-}\right)}=0.1363\pm 0.0035\pm 0.051,\\ {}\begin{array}{l}\frac{\mathcal{B}\left({B}_s^0\to {K}_{\mathrm{S}}^0{\pi}^{+}{\pi}^{-}\right)}{\mathcal{B}\left({B}^0\to {K}_{\mathrm{S}}^0{\pi}^{+}{\pi}^{-}\right)}=0.269\pm 0.011\pm 0.015\pm 0.008,\\ {}\frac{\mathcal{B}\left({B}_s^0\to {K}_{\mathrm{S}}^0{K}^{+}{K}^{-}\right)}{\mathcal{B}\left({B}^0\to {K}_{\mathrm{S}}^0{\pi}^{+}{\pi}^{-}\right)}=0.0303\pm 0.0041\pm 0.0025\pm 0.0009,\\ {}\frac{\mathcal{B}\left({B}_s^0\to {K}_{\mathrm{S}}^0{K}^{\pm }{\pi}^{\mp}\right)}{\mathcal{B}\left({B}^0\to {K}_{\mathrm{S}}^0{\pi}^{+}{\pi}^{-}\right)}=1.818\pm 0.021\pm 0.031\pm 0.056,\end{array}\end{array}} $$ B B0KS0K+K B B0KS0π+π =0.578±0.007±0.017, B B0KS0K±K B B0KS0π+π =0.1363±0.0035±0.051, B Bs0KS0π+π B B0KS0π+π =0.269±0.011±0.015±0.008, B Bs0KS0K+K B B0KS0π+π =0.0303±0.0041±0.0025±0.0009, B Bs0KS0K±π B B0KS0π+π =1.818±0.021±0.031±0.056, where the uncertainties are statistical, systematic, and due to knowledge of the ratio of hadronisation fractions of the$$ {B}_s^0 $$ Bs0 andB0mesons, respectively. 
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    Free, publicly-accessible full text available July 1, 2027
  2. An amplitude analysis of the Ξc+pKπ+ decay together with a measurement of the Ξc+ polarization vector in semileptonic beauty-hadron decays is presented. The analysis is performed using proton-proton collision data collected by the LHCb experiment, corresponding to an integrated luminosity of 9fb1 . An amplitude model is developed and the resonance fractions as well as two- and three-body decay parameters are reported. A sizeable Ξc+ polarization is found. A large sensitivity of the Ξc+pKπ+ decay to the polarization is seen, making the amplitude model suitable for Ξc+ polarization measurements in other systems. 
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    Free, publicly-accessible full text available November 1, 2026
  3. A<sc>bstract</sc> The invariant-mass distribution for the coherent photoproduction of dipions in ultraperipheral PbPb collisions is measured using data, corresponding to an integrated luminosity of 224.6 ± 9.6μb−1, collected by the LHCb experiment in 2018 at a nucleon-nucleon centre-of-mass energy$$ \sqrt{{\textrm{s}}_{\textrm{NN}}}=5.02 $$ sNN =5.02 TeV. In the mass range from 400 to 1200 MeV, the results are consistent with previous experiments, with the spectrum dominated by theρ0meson, which interferes with a nonresonant component, together with a smallerωmeson contribution. In an extended mass range up to 2300 MeV, models previously used do not fit the data and a consistent description requires the introduction of two resonances at masses of 1350 ± 20 MeV and 1790 ± 20 MeV with widths of about 300 MeV. The cross-section for each meson is measured differentially in twelve bins of rapidity from 2.05 to 4.90. Theρ0cross-section increases with rapidity from about 400 to 600 mb and is measured with a typical precision of 8%, while the cross-section times branching fraction for theω,ρ′andρ′′, with the statistical precision of the data, do not have a pronounced rapidity dependence and are between 0.5 and 1.5mb, with uncertainties up to 30%. A large nuclear suppression is observed for theρ0meson compared to expectations based on photoproduction on the proton that use the impulse approximation. Significant suppression is also observed compared to that predicted by elastic scattering described in the Glauber approach, or with the addition of inelastic scattering in a Gribov-Glauber model. 
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    Free, publicly-accessible full text available November 1, 2026
  4. 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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  5. 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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  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<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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  8. A<sc>bstract</sc> The ratio of prompt production cross-sections ofψ(2S) andJ/ψmesons in their dimuon final state is measured as a function of centrality, using data collected by the LHCb detector in PbPb collisions at$$ \sqrt{s_{\textrm{NN}}} $$ sNN = 5.02 TeV, for the first time in the forward rapidity region. The measured ratio shows no dependence on the collision centrality, and is compared to the latest theory predictions and to the recent measurements in literature. 
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