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      Combining exclusive semi-leptonic and hadronic B decays to measure |V_ub|

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          Abstract

          The Cabibbo-Kobayashi-Maskawa matrix element |V_ub| can be extracted from the rate for the semi-leptonic decay B -> pi + l + antineutrino_l, with little theoretical uncertainty, provided the hadronic form factor for the B -> pi transition can be measured from some other B decay. In here, we suggest using the decay B -> pi J\psi. This is a color suppressed decay, and it cannot be properly described within the usual factorization approximation; we use instead a simple and very general phenomenological model for the b d J\psi vertex. In order to relate the hadronic form factors in the B -> pi J\psi and B -> pi + l + antineutrino_l decays, we use form factor relations that hold for heavy-to-light transitions at large recoil.

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          Most cited references14

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          Relationship between form factors in SemileptonicB¯andDdecays and exclusive rareB¯-meson decays

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            \(|V_{ub}|\) from exclusive \(B\) and \(D\) decays

            , (2009)
            We propose a model-independent method to determine the magnitude of the Cabibbo-Kobayashi-Maskawa matrix element \(|V_{ub}|\) from exclusive \(B\) and \(D\) decays. Combining information obtainable from \(B\to \rho\ell\bar\nu_\ell\), \(B\to K^*\nu\bar\nu\), \(D\to \rho\bar\ell\nu_\ell\) and \(D\to K^*\bar\ell\nu_\ell\), a determination of \(|V_{ub}|\) is possible, with an uncertainty from theory of around 10\%. Theoretical uncertainties in the \(B\to K^*\ell\bar\ell\) decay rate are discussed.
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              Reliable predictions in exclusive rare B decays

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                Author and article information

                Journal
                11 July 1996
                1997-04-23
                Article
                10.1103/PhysRevD.55.1418
                hep-ph/9607295
                377b5f5b-baa9-4c95-9adb-e9855794fa47
                History
                Custom metadata
                UMHEP-431
                Phys.Rev. D55 (1997) 1418-1420
                Latex, 7 pages, no figures
                hep-ph

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