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arxiv: 1302.1042 · v2 · pith:ZM5T22Z2new · submitted 2013-02-05 · ✦ hep-ph · hep-ex

On the anomalous enhancement observed in B to D^((*)) \, τ \, {bar ν}_τ decays

classification ✦ hep-ph hep-ex
keywords decaysmodeloperatorsemileptonicstandardaccomodateadditionalanomalous
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The BaBar measurements of the ratios ${\cal R}(D^{(*)})=\frac{{\cal B}(B \to D^{(*)} \tau {\bar \nu}_\tau)}{{\cal B}(B \to D^{(*)} \mu {\bar \nu}_\mu)}$ deviate from the standard model expectation, while new results on the purely leptonic $B \to \tau {\bar \nu}_\tau$ mode show a better consistency with the standard model, within the uncertainties. In a new physics scenario, one possibility to accomodate these two experimental facts consists in considering an additional tensor operator in the effective weak hamiltonian. We study the effects of such an operator in a set of observables, in semileptonic $B \to D^{(*)}$ modes as well as in semileptonic $B$ and $B_s$ decays to excited positive parity charmed mesons.

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Cited by 2 Pith papers

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  1. Semileptonic $B_q$ decays to heavy tensor mesons

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    Form factors for B_q to J^P=2^+ tensor meson semileptonic decays are computed via light-cone QCD sum rules with external B state, yielding SM decay rates and LFU test ratios.

  2. Lepton Flavor Universality tests through angular observables of $\overline{B}\to D^{(\ast)}\ell\overline{\nu}$ decay modes

    hep-ph 2019-07 unverdicted novelty 5.0

    Angular observables in B→D(*)ℓν decays can distinguish Lorentz structures of new physics contributions fitted to measured R(D(*)) ratios, even when those ratios agree with the Standard Model.