Scrutinizing New Physics in Semi-leptonic BcJ/ψτνB_{c}\rightarrow J/\psi \tau\nu Decay

Abstract

We perform a global analysis of the bcτνb\to c\tau\nu data using the recent lattice results on the BcJ/ψB_c\to J/\psi vector and axial-vector form factors. To explore the effects from the tensor operator of new physics beyond the standard model, we determine the tensor form factors by using the non-relativistic QCD (NRQCD) relations between tensor and (axial-)vector form factors. Based on the lattice+NRQCD form factors, we fit the Wilson coefficients and the new physics couplings in R2R_2, S1S_1 and U1U_1 leptoquark models by including the recently measured R(Λc)R(\Lambda_c) and imposing the relaxed constraint B(BcJ/ψ)<30%\mathcal B(B_c\to J/\psi)<30\% in light of the recent studies on LEP1 data and BcB_c lifetime. We give predictions for the experimental observables including R(J/ψ)R(J/\psi), Pτ(J/ψ)P_\tau(J/\psi), FL(J/ψ)F_L(J/\psi) and AFB(J/ψ)\mathcal A_{FB}(J/\psi) as well as their q2q^2 distribution in new physics scenarios/models. Our results suggest that the longitudinal τ\tau polarization fraction Pτ(J/ψ)P_\tau(J/\psi) and the forward-backward asymmetry AFB(J/ψ)\mathcal A_{FB}(J/\psi) are useful for testing the R2R_2 leptoquark model.Comment: 13 pages, 10 figures and 6 table

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