Studying the tensor resonance contributions in B PP+- and B PV+- decays
Ru-Min Wang, Xiu-Ping Fan, Si-Yu Xu, Yi Qiao, Xiao-Dong Cheng, Yuan-Guo Xu
Abstract
We analyze the semileptonic B T+-, B T( PP)+-, and B T( PV)+- decays with =e,μ,τ based on flavor SU(3) analysis in the standard model (T denotes the light tensor meson, P denotes the light pseudoscalar meson, and V denotes the light vector meson). The hadronic amplitudes of the B T+- decays are related by the nonperturbative parameters, and all branching ratios of the B T+- decays are obtained by the experimental data of the branching ratio of B0s f2(1525)μ+μ- in three cases, and then the branching ratios of the B T( PP)+- and B T( PV)+- decays are predicted by the narrow width approximation and further considering finite width effects of the intermediate resonances. Compared with the narrow width results, the finite width effects slightly reduce the branching fractions for most decays. However, sizeable finite width effects are found in some near threshold modes. For the subthreshold K2*(1430) Kη' relevant channels, the finite width of the tensor resonance can open a nonzero contribution. Compared with the measured B PP+- and B PV+- decays, we find that the branching ratios with the tensor resonance states are small. Therefore, other resonances, for example, the vector mesons, the scalar mesons, the axial-vector mesons or their excited states, might give the dominant contributions to the relevant decays. Our results might be tested in current and future experiments.
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