English

Revisiting $B_{c}^-\to J/\psi (\eta_c) L^-$ decays within the SM and beyond in QCD factorization

High Energy Physics - Phenomenology 2025-08-13 v2

Abstract

Motivated by the deviations observed between the data and the SM predictions of B(Bˉs0Ds+π)\mathcal{B}(\bar{B}_s^0\to D_s^+ \pi^-) and B(Bˉd0D+K)\mathcal{B}(\bar{B}_d^0\to D^+ K^-), we revisit the BcJ/ψ(ηc)LB_{c}^{-}\to J/\psi(\eta_{c}) L^{-} decays, with L=π,K(),ρL=\pi, K^{(*)}, \rho, both within the SM and beyond. Since these processes are also mediated by bcuˉd(s)b\to c \bar{u} d(s) transitions and hence dominated by the colour-allowed tree topology, the QCD factorization (QCDF) is expected to hold in the heavy-quark limit. Firstly, we update the SM predictions of these decays by including the nonfactorizable vertex corrections up to the NNLO in αs\alpha_s. It is found that, relative to the LO results, the branching ratios of these decays up to the NLO and NNLO corrections are always enhanced, with a relative amount given by δNLO=(BNLOBLO)/BLO+6%\delta_{\text{NLO}} = (\mathcal{B}^\text{NLO}-\mathcal{B}^\text{LO})/\mathcal{B}^\text{LO} \approx +6\% and δNNLO=(BNNLOBLO)/BLO+9%\delta_{\text{NNLO}} = (\mathcal{B}^\text{NNLO}-\mathcal{B}^\text{LO})/\mathcal{B}^\text{LO} \approx +9\%, respectively. To minimize the uncertainties brought by VcbV_{cb} and the transition form factors, we construct the ratios RJ/ψ(ηc)LR_{J/\psi(\eta_{c}) L}, R(s)L()R_{(s)L}^{(\ast)}, and Rπ/μνμR_{\pi/\mu\nu_{\mu}}, which are then used to constrain the model-independent new physics (NP) Wilson coefficients. After considering the latest Belle data and the updated B(s)D(s)()B_{(s)}\to D_{(s)}^{(*)} form factors, we find that the deviations can still be explained by the NP four-quark operators with (1+γ5)(1γ5)(1+\gamma_{5}) \otimes (1-\gamma_{5}) and (1+γ5)(1+γ5)(1+\gamma_{5}) \otimes (1+\gamma_{5}) structures, while the solution with γμ(1+γ5)γμ(1γ5)\gamma^\mu (1+\gamma_{5}) \otimes \gamma_\mu (1-\gamma_{5}) structure does not work anymore, under the combined constraints from R(s)L()R_{(s)L}^{(\ast)} at the 2σ2\sigma level. Furthermore, the ratio Rπ/μνμR_{\pi/\mu\nu_{\mu}}, once measured precisely, could provide complementary constraint.

Keywords

Cite

@article{arxiv.2503.11279,
  title  = {Revisiting $B_{c}^-\to J/\psi (\eta_c) L^-$ decays within the SM and beyond in QCD factorization},
  author = {Wei-Jun Deng and Fang-Min Cai and Xin-Qiang Li and Yan Shi and Ya-Dong Yang},
  journal= {arXiv preprint arXiv:2503.11279},
  year   = {2025}
}

Comments

31 pages, 9 figures and 6 tables; final version published in the journal