English

Angular distribution of the FCNC process $B_{c}\to{D}_{s}^{*}(\to{D}_{s}\pi)\ell^{+}\ell^{-}$

High Energy Physics - Phenomenology 2023-11-21 v2 High Energy Physics - Experiment

Abstract

In this work, we study the flavor-changing neutral-current process BcDs(Dsπ)+B_{c}\to{D}_{s}^{*}(\to{D}_{s}\pi)\ell^{+}\ell^{-} (\ell= ee, μ\mu, τ\tau). The relevant weak transition form factors are obtained by using the covariant light-front quark model, in which, the main inputs, i.e., the meson wave functions of BcB_{c} and DsD_{s}^{*}, are adopted as the numerical wave functions from the solution of the Schr\"{o}dinger equation with the modified Godfrey-Isgur model. With the obtained form factors, we further investigate the relevant branching fractions and their ratios, and some angular observables, i.e., the forward-backward asymmetry AFBA_{FB}, the polarization fractions FL(T)F_{L(T)}, and the CPCP-averaged angular coefficients SiS_{i} and the CPCP asymmetry coefficients AiA_{i}. We also present our results of the clean angular observables P1,2,3P_{1,2,3} and P4,5,6,8P^{\prime}_{4,5,6,8}, which can reduce the uncertainties from the form factors. Our results show that the corresponding branching fractions of the electron or muon channels can reach up to 10810^{-8}. With more data being accumulated in the LHCb experiment, our results are helpful for exploring this process, and deepen our understanding of the physics around the bs+b\to{s}\ell^{+}\ell^{-} process.

Keywords

Cite

@article{arxiv.2309.08191,
  title  = {Angular distribution of the FCNC process $B_{c}\to{D}_{s}^{*}(\to{D}_{s}\pi)\ell^{+}\ell^{-}$},
  author = {Yu-Shuai Li and Xiang Liu},
  journal= {arXiv preprint arXiv:2309.08191},
  year   = {2023}
}

Comments

25 pages, 8 tables and 9 figures