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D* polarization as a probe to discriminate new physics in B --> D* tau nubar

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arxiv 1606.03164 v2 pith:VQBBPIKY submitted 2016-06-10 hep-ph hep-ex

classification hep-phhep-ex
keywords operatorsphysicsfindgoodpolarizationscalartensorangular
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

The confirmation of excess in $R_{D^*}$ at the LHCb is an indication of lepton flavor non-universality. Various different new physics operators and their coupling strengths, which provide a good fit to $R_D$, $R_{D^*}$ and $q^2$ spectra, were identfied previously. In this work, we try to find angular observables in $\bar{B} \to D^* \tau \bar{\nu}$ which enable us to distinguish between these new physics operators. We find that the $D^*$ polarization fraction $f_L(q^2)$ is a good discriminant of scalar and tensor new physics operators. The change in $\langle f_L(q^2) \rangle$, induced by scalar and tensor operators, is about three times larger than the expected uncertainty in the upcoming Belle measurement.

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  1. Model-independent method for measuring the angular coefficients of $B^0 \to D^{*-} \tau^+ \nu_{\tau}$ decays

    hep-ph 2019-08 conditional novelty 6.0 of 10

    A multidimensional template fit recovers the B0 to D*- tau+ nu_tau angular coefficients unbiasedly and model-independently despite missing neutrino information.

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