New parametrization of the form factors in B D decays

Abstract

A new model-independent parametrization is proposed for the hadronic form factors in the semileptonic B D decay. By a combined consideration of the recent experimental and lattice QCD data, we determine precisely the Cabibbo-Kobayashi-Maskawa matrix element |Vcb|=41.01(75)× 10-3 and the ratio RD=BR(B D τ τ)BR(B D )=0.301(5). The coefficients in this parametrization, related to phase shifts by sumrulelike dispersion relations and hence called phase moments, encode important scattering information of the BD interactions which are poorly known so far. Thus, we give strong hints about the existence of at least one bound and one virtual B D S-wave 0+ states, subject to uncertainties produced by potentially sizable inelastic effects. This formalism is also applicable for any other semileptonic processes induced by the weak b c transition.

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