English

Covariant Light-Front Approach for $B_c$ transition form factors

High Energy Physics - Phenomenology 2014-11-18 v2

Abstract

In the covariant light-front quark model, we investigate the form factors of BcB_c decays into D,D,Ds,Ds,ηc,J/ψ,B,B,Bs,BsD, D^*, D_s, D_s^*, \eta_c, J/\psi, B, B^*, B_s, B_s^* mesons. The form factors in the spacelike region q2<0q^2<0 are directly evaluated. To extrapolate the form factors to the full kinematic region, we fit the form factors by adopting a three-parameter form from the spacelike region. bu,d,sb\to u,d,s transition form factors at maximally recoiling point (q2=0q^2=0) are smaller than bcb\to c and cd,sc\to d,s transition form factors, while the bd,s,cb\to d,s,c form factors at zero recoiling point are close to each other. In the fitting procedure, we find the parameters for the form factors A2(BcB)A_2(B_c\to B^*) and A2(BcBs)A_2(B_c\to B^*_s) strongly depend on the decay constants of BB^* and BsB_s^* mesons. Fortunately, the semileptonic and nonleptonic BcB_c decays are not sensitive to these form factors. With the form factors, we also investigate the branching fractions, polarizations of the semileptonic BcMlνB_c\to Ml\nu decays. Semileptonic Bc(ηc,J/ψ)lνB_c\to (\eta_c,J/\psi)l\nu and Bc(Bs,Bs)lνB_c\to (B_s,B_s^*)l\nu decays have much larger branching fractions than Bc(D,D,B,B)lνB_c\to (D,D^*,B,B^*)l\nu. In the three kinds of BcVlνB_c\to Vl\nu decays, contributions from the longitudinal polarized vector is comparable with those from the transversely polarized vector. These predictions will be tested at the ongoing and forthcoming hadron colliders.

Keywords

Cite

@article{arxiv.0811.3748,
  title  = {Covariant Light-Front Approach for $B_c$ transition form factors},
  author = {Wei Wang and Yue-Long Shen and Cai-Dian Lü},
  journal= {arXiv preprint arXiv:0811.3748},
  year   = {2014}
}

Comments

15 pages, 1 figure, uncertainties reanalyzed, several parts reorganized, conclusions unchanged