B -> J/psi K* Decays in QCD Factorization

Abstract

The hadronic decay B -> J K* is analyzed within the framework of QCD factorization. The spin amplitudes A0, A and A in the transversity basis and their relative phases are studied using various different form-factor models for B-K* transition. The effective parameters a2h for helicity h=0,+,- states receive different nonfactorizable contributions and hence they are helicity dependent, contrary to naive factorization where a2h are universal and polarization independent. QCD factorization breaks down even at the twist-2 level for transverse hard spectator interactions. Although a nontrivial strong phase for the A amplitude can be achieved by adjusting the phase of an infrared divergent contribution, the present QCD factorization calculation cannot say anything definite about the phase phi. Unlike B -> J/psi K decays, the longitudinal parameter a20 for B -> J/psi K* does not receive twist-3 corrections and is not large enough to account for the observed branching ratio and the fraction of longitudinal polarization. Possible enhancement mechanisms for a20 are discussed.

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