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R.Wiedner, D.Wilkinson, G.Wilkinson, M. K.Williams, I.Williams, M.Williams, M. R. J.Wilson, F. F.Wislicki, W.Witek, M.Witola, L.Wormser, G.Wotton, S. A.Wu, H.Wyllie, K.Xiang, Z.Xiao, D.Xie, Y.Xu, A.Xu, J.Xu, L.Xu, M.Xu, Q.Xu, Z.Yang, D.Yang, S.Yang, Y.Yang, Z.Yao, Y.Yeomans, L. E.Yin, H.Yu, J.Yuan, X.Zaffaroni, E.Zavertyaev, M.Zdybal, M.Zenaiev, O.Zeng, M.Zhang, D.Zhang, L.Zhang, S.Zhang, Y.Zharkova, A.Zhelezov, A.Zheng, Y.Zhou, T.Zhou, X.Zhou, Y.Zhovkovska, V.Zhu, X.Zhu, Z.Zhukov, V.Zou, Q.Zucchelli, S.Zuliani, D.Zunica, G.2023-09-252023-09-252023-09-252023-06-1410.1007/JHEP06(2023)073https://infoscience.epfl.ch/handle/20.500.14299/201026WOS:001035257900001A search for the lepton-flavour violating decays B0 -> K*0µ(±)e(∓) and B(s)0-> ϕµ(±)e(∓) is presented, using proton-proton collision data collected by the LHCb detector at the LHC, corresponding to an integrated luminosity of 9 fb(-1). No significant signals are observed and upper limits of [see Image] are set at 90% (95%) confidence level. These results constitute the world's most stringent limits to date, with the limit on the decay B(s)0 -> ϕµ(±)e(∓) the first being set. In addition, limits are reported for scalar and left-handed lepton-flavour violating New Physics scenarios.Physics, Particles & FieldsPhysicsb physicsflavour physicshadron-hadron scatteringrare decaySearch for the lepton-flavour violating decays B0 -> K*0µ(±)e(∓) and B(s)0-> ϕµ(±)e(∓)text::journal::journal article::research article