Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5495785 | Annals of Physics | 2017 | 12 Pages |
Abstract
In terms of Pc1,c2=Pc(4380,4450)+ as the hidden charm pentaquark states to consist of ccÌuud, we study the semileptonic Îbâ(Pc1,c2â)JâÏpââνÌâ
decays. In our discussion, while the main contribution to ÎbâKâJâÏp is from the non-perturbative process via the doubly charmful bâccÌs transition, we propose that the ÎbâPc1,c2âJâÏp transitions partly contribute to the ÎbâKâ(Pc1,c2â)JâÏp decays, in which the required ccÌ pair is formed by the sea quarks, intrinsic charm, or both. We predict that B(ÎbâJâÏpââνÌâ)=(2.04â1.57+4.82,1.75â1.35+4.14)Ã10â6 for â=(e,μ), which are about two orders of magnitude smaller than the observed decay of ÎbâpμνÌμ. We also explore the angular correlations for the JâÏp and ââνÌâ pairs. Our results of the decay branching ratios and angular asymmetries in ÎbâJâÏpââνÌâ, accessible to the ongoing experiments at the LHCb, can be used to improve the understanding of the hidden charm pentaquark states.
Keywords
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Physics and Astronomy (General)
Authors
Ping Zhou, Y.K. Hsiao, C.Q. Geng,