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Measurements of branching fractions, rate asymmetries, and angular distributions in the rare decays B --> Kl+l- and B --> K*l+l-

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arxiv hep-ex/0604007 v2 pith:HJ7ZAI7B submitted 2006-04-03 hep-ex

classification hep-ex
keywords decaysbranchingfractionsmeasuremeasurementsangularasymmetriescurrent
verification ladder T0 review T1 audit T2 compute T3 formal

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We present measurements of the flavor-changing neutral current decays B --> Kl+l- and B --> K*l+l-, where l+l- is either an e+e- or mu+mu- pair. The data sample comprises 229 x 10^6 Y(4s) -->to BBbar decays collected with the BaBar detector at the PEP-II e+e- storage ring. Flavor-changing neutral current decays are highly suppressed in the Standard Model and their predicted properties could be significantly modified by new physics at the electroweak scale. We measure the branching fractions B(B --> Kll) = (0.34 +- 0.07 +- 0.02) x 10^{-6}, B(B --> K*ll) = (0.78^{+0.19}_{-0.17} +- 0.11) x 10^{-6}, the direct CP asymmetries of these decays, and the relative abundances of decays to electrons and muons. For two regions in l+l- mass, above and below m(Jpsi), we measure partial branching fractions and the forward-backward angular asymmetry of the lepton pair. In these same regions we also measure the K* longitudinal polarization in B --> K*l+l- decays. Upper limits are obtained for the lepton flavor-violating decays B --> Kemu and B --> K*emu. All measurements are consistent with Standard Model expectations.

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    Under the minimally-broken U(2)_q × U(2)_ℓ flavor symmetry hypothesis, semileptonic B decay amplitudes are controlled by a few parameters, yielding testable correlations such as equal new-physics effects in b→u and b→...

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