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  1. Free, publicly-accessible full text available September 23, 2026
  2. 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
  3. Abstract An amplitude analysis of the$${{{B} ^0} \!\rightarrow {\eta _{c}} (1S) {{K} ^+} {{\pi } ^-}} $$ B0ηc(1S)K+π- decays with$${\eta _{c}} (1S) \rightarrow {p} {\overline{{p}}} $$ ηc(1S)pp¯ is performed using a sample corresponding to an integrated luminosity of 9$$\,\text {fb} ^{-1}$$ fb-1 of$$p $$ p $$p $$ p collision data collected by the LHCb detector at centre-of-mass energies of$$\sqrt{s}$$ s = 7, 8 and 13$$\,\text {Te\hspace{-1.00006pt}V}$$ TeV . The data are described with a model including only intermediate contributions from known$${K} ^{*0}$$ K 0 resonances. Evidence for an exotic resonance in the$${\eta _{c}} (1S) {{\pi } ^-} $$ ηc(1S)π- system, reported in a previous analysis of this decay channel, is not confirmed. The inclusive branching fraction of the$${{B} ^0} \rightarrow {\eta _{c}} (1S) {{K} ^+} {{\pi } ^-} $$ B0ηc(1S)K+π- decays is measured to be$$\begin{aligned}&\mathcal {B}({{B} ^0} \rightarrow {\eta _{c}} (1S) {{K} ^+} {{\pi } ^-}) \\&\quad = (5.82 \pm 0.20 \pm 0.23 \pm 0.55) \times 10^{-4}, \end{aligned}$$ B(B0ηc(1S)K+π-) =(5.82±0.20±0.23±0.55)×10-4, where the first uncertainty is statistical, the second systematic, and the third arises from the limited knowledge of external branching fractions. 
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    Free, publicly-accessible full text available May 1, 2027
  4. A search is performed for lepton-number-violating BD(*)+μμ decays, using data collected by the LHCb experiment in proton-proton collisions at a center-of-mass energy of 13 TeV, corresponding to an integrated luminosity of 5.4fb1 . No significant signal is observed, and upper limits are set on the branching fractions, B(BD+μμ)<4.6×108 and B(BD*+μμ)<5.9×108 , at the 95% confidence level. 
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    Free, publicly-accessible full text available May 1, 2027
  5. A<sc>bstract</sc> A measurement of the branching fraction for the decay$$ \Lambda \to p{\mu}^{-}{\overline{\nu}}_{\mu } $$ Λpμ ν¯μ is presented usingppcollision data collected by the LHCb experiment at a centre-of-mass energy of 13 TeV. The analysis is based on data recorded between 2016 and 2018, corresponding to an integrated luminosity of 5.4 fb−1. The result is obtained using Λ→ pμdecays as a normalisation channel. The measured branching fraction is$$ \mathcal{B}\left(\Lambda \to p{\mu}^{-}{\overline{\nu}}_{\mu}\right)=\left(1.462\pm 0.016\pm 0.100\pm 0.011\right)\times {10}^{-4} $$ B Λpμ ν¯μ = 1.462±0.016±0.100±0.011 ×104 , where the uncertainties are statistical, systematic, and due to the limited knowledge of the normalisation mode branching fraction, respectively. This result improves the precision of the branching fraction measurement by a factor of two compared to the previous best measurement and sets a more stringent bound on lepton flavour universality ins → uquark transitions. It is consistent with previous measurements, and the extracted lepton flavour universality test observable,$$ {R}^{\mu e}=\frac{\Gamma \left(\Lambda \to p{\mu}^{-}{\overline{\nu}}_{\mu}\right)}{\Gamma \left(\Lambda \to p{e}^{-}{\overline{\nu}}_e\right)}=0.175\pm 0.012 $$ Rμe= Γ Λpμ ν¯μ Γ Λpe ν¯e =0.175±0.012 , agrees with the Standard Model prediction. 
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    Free, publicly-accessible full text available April 1, 2027
  6. A<sc>bstract</sc> Thepp→W±(→μ±νμ)Xcross-sections are measured at a proton-proton centre-of-mass energy$$ \sqrt{s}=5.02 $$ s=5.02 TeV using a dataset corresponding to an integrated luminosity of 100 pb−1recorded by the LHCb experiment. Considering muons in the pseudorapidity range 2.2< η <4.4, the cross-sections are measured differentially in twelve intervals of muon transverse momentum between 28< pT<52 GeV. Integrated overpT, the measured cross-sections are$$ {\displaystyle \begin{array}{c}{\sigma}_{W^{+}\to {\mu}^{+}{\nu}_{\mu }}=300.9\pm 2.4\pm 3.8\pm 6.0\ \textrm{pb},\\ {}{\sigma}_{W^{-}\to {\mu}^{-}{\overline{\nu}}_{\mu }}=236.9\pm 2.1\pm 2.7\pm 4.7\ \textrm{pb},\end{array}} $$ σ W+μ+νμ =300.9±2.4±3.8±6.0pb, σ Wμ ν¯μ =236.9±2.1±2.7±4.7pb, where the first uncertainties are statistical, the second are systematic, and the third are associated with the luminosity calibration. These integrated results are consistent with theoretical predictions. This analysis introduces a new method to determine theW-boson mass using the measured differential cross-sections corrected for detector effects. The measurement is performed on this statistically limited dataset as a proof of principle and yields$$ {m}_W=80369\pm 130\pm 33\ \textrm{MeV}, $$ mW=80369±130±33MeV, where the first uncertainty is experimental and the second is theoretical. 
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    Free, publicly-accessible full text available March 1, 2027
  7. Free, publicly-accessible full text available February 1, 2027
  8. A<sc>bstract</sc> A measurement ofCPasymmetry in$$ {D}^0\to {K}_{\textrm{S}}^0{K}_{\textrm{S}}^0 $$ D0KS0KS0 decays is reported, based on a data sample of proton-proton collisions collected with the LHCb detector in 2024 at a centre-of-mass energy of 13.6 TeV, corresponding to an integrated luminosity of 6.2 fb−1. The$$ {D}^0\to {K}_{\textrm{S}}^0{\pi}^{+}{\pi}^{-} $$ D0KS0π+π decay is used as calibration channel to cancel residual detection and production asymmetries. The time-integratedCPasymmetry for the$$ {D}^0\to {K}_{\textrm{S}}^0{K}_{\textrm{S}}^0 $$ D0KS0KS0 mode is measured to be$$ {\mathcal{A}}^{CP}\left({D}^0\to {K}_{\textrm{S}}^0{K}_{\textrm{S}}^0\right)=\left(1.86\pm 1.04\pm 0.41\right)\%, $$ ACP D0KS0KS0 = 1.86±1.04±0.41 %, where the first uncertainty is statistical, and the second is systematic. This measurement represents the most precise single-experiment determination of this quantity to date. 
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    Free, publicly-accessible full text available February 1, 2027
  9. An amplitude analysis of the B+(π+π)( KS0 π+) decay is performed in the mass regions 0.30< mπ+π <1.10GeV/c2 and 0.75< m KS0 π+ <1.20GeV/c2 , using pp collision data recorded with the LHCb detector corresponding to an integrated luminosity of 9fb1 . The polarization fractions and CP asymmetries for B+ρ(770)0K*(892)+ decays are measured. Violation of the CP symmetry in the decay B+ρ(770)0K*(892)+ is observed for the first time, with a significance exceeding 9 standard deviations. The CP asymmetry is measured to be ACP = 0.507±0.062(stat)±0.024(syst) and the CP -averaged longitudinal polarization fraction of fL= 0.720±0.028(stat)±0.009(syst) . The measurements help to shed light on the polarization puzzle of B mesons decaying to two vector mesons. 
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    Free, publicly-accessible full text available January 1, 2027