Relations between b→ cτ Decay Modes in Scalar Models

Abstract

As a consequence of the Ward identity for hadronic matrix elements, we find relations between the differential decay rates of semileptonic decay modes with the underlying quark-level transition b→ cτ , which are valid in scalar models. The decay-mode dependent scalar form factor is the only necessary theoretical ingredient for the relations. Otherwise, they combine measurable decay rates as a function of the invariant mass-squared of the lepton pair q2 in such a way that a universal decay-mode independent function is found for decays to vector and pseudoscalar mesons, respectively. This can be applied to the decays B→ D*τ, Bs→ Ds*τ, Bc→ J/τ and B→ Dτ, Bs→ Dsτ, Bc→ ηcτ, with implications for R(D(*)), R(Ds(*)), R(J/), R(ηc), and B(Bc→ τ). The slope and curvature of the characteristic q2-dependence is proportional to scalar new physics parameters, facilitating their straight forward extraction, complementary to global fits.

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