We investigate the ratio of the branching fractions of the molecular candidates decaying into the ground and radially excited states within the quark interchange model. Our numerical results suggest that these molecular candidates are more likely to decay into the radially excited states than into ground states. Especially, the ratio Γ[Zc(4430)→πψ(2S)]/Γ[Zc(4430)→πJ/ψ]∼9.8 is close to the experimental measurement, which supports the interpretation of Zc(4430) as the DˉD∗(2S) molecular state. The ratios of the branching fractions of Zb(10610) and Zb(10650) to πΥ(2S,3S) and πΥ(1S) agrees very well with Belle's measurement. We also predict the similar ratios for Zc(3900), Zc(4020), RZc(3900)≈1.3 and RZc(4020)≈4.7. Hopefully the πψ(2S) mode, and ratios RZc(3900) and RZc(4020) will be measured by the BESIII and Belle collaborations in the near future, which shall be very helpful to understand the underlying dynamics of these exotic states.
@article{arxiv.1407.3684,
title = {Resolving the puzzling decay patterns of charged $Z_c$ and $Z_b$ states},
author = {Xiao-Hai Liu and Li Ma and Li-Ping Sun and Xiang Liu and Shi-Lin Zhu},
journal= {arXiv preprint arXiv:1407.3684},
year = {2014}
}