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Semileptonic $B_c$ meson decays to S-wave charmonium states

High Energy Physics - Phenomenology 2019-10-30 v1

Abstract

We study the semileptonic decays of BcB_c meson to S-wave charmonium states in the framework of relativistic independent quark model based on an average flavor-independent confining potential U(r)U(r) in the scalar-vector harmonic form U(r)=12(1+γ0)(ar2+V0)U(r)=\frac{1}{2}(1+\gamma^0)(ar^2+V_0), where (aa, V0V_0) are the potential parameters.The form factors for Bc+ηc/ψe+νeB_c^+\to \eta_c /\psi e^+\nu_e transitions are studied in the physical kinematic range. Our predicted branching ratios (BR) for transitions to ground state charmonia are found comparatively large \sim 10210^{-2}, compared to those for transitions to radially excited 2S and 3S states. Like all other mpdel predictions, our predicted BR are obtained in the hierarchy: BR(Bc+ηc/ψ(3S)B_c^+\to \eta_c /\psi (3S)) << BR(Bc+ηc/ψ(2S)B_c^+\to \eta_c/ \psi (2S)) << BR(Bc+ηc/ψ(1S)B_c^+\to \eta_c /\psi (1S)). The longitudinal (ΓL\Gamma_L) and transverse polarization (ΓT\Gamma_T) for Bcψ(ns)B_c \to \psi(ns) decay modes are predicted in the small and large q2q^2 - region as well as in the whole physical region. The ratios for such transitions are obtained ΓLΓT<1\frac {\Gamma_L}{\Gamma_T} < 1 throughout the kinematic range which means the Bc+B_c^+ meson transitions to vector meson charmonium states take place predominantly in transverse polarization mode. The theoretical predictions on these transitions could be tested in the on-going and forthcoming experiments at LHCb.

Keywords

Cite

@article{arxiv.1910.13206,
  title  = {Semileptonic $B_c$ meson decays to S-wave charmonium states},
  author = {Sonali Patnaik and Lopamudra Nayak and P. C. Dash and Susmita Kar and N. Barik},
  journal= {arXiv preprint arXiv:1910.13206},
  year   = {2019}
}