Probing the inner structures of the observed Ξb and Ξb' resonances
Abstract
To shed light on the inner structure of the observed single-bottom strange baryons, in this work we systematically study the Okubo-Zweig-Iizuka allowed strong decay properties of 1P- and 2S-wave Ξb and Ξb' baryons within the j-j coupling scheme in the framework of the quark pair creation model. For a comparison, we also give the predictions of the chiral quark model. The calculations indicate that: (i) The 1P-wave λ-mode Ξb states Ξb|JP=1/2-,1λ and Ξb|JP=3/2-,1λ are highly promising candidates for the observed state Ξb(6087) and Ξb(6095)/Ξb(6100), respectively. The 1P-wave ρ-mode Ξb states Ξb|JP=3/2-,2ρ and Ξb|JP=5/2-,2ρ are likely candidates for the state Ξb(6227). Meanwhile, we cannot rule out the possibility that Ξb(6227) could be a candidate of the 1P-wave λ-mode Ξb' state Ξb'|JP=3/2-,2λ or Ξb'|JP=5/2-,2λ. (ii) For the other 1P-wave ρ-mode Ξb states and 1P-wave λ-mode Ξb' states, they may be moderate states with a width of several tens of MeV. Their main decay channels are Ξbπ, Ξb'π, Ξb*π or ΛbK. The width of the 1P-wave ρ-mode Ξb' states are slightly broader, approximately several tens to over one hundred MeV, and the dominant decay channels are Ξb'π, Ξb*π, ΣbK or Σb*K. (iii) The 2S-wave λ-mode Ξb and Ξb' states are most likely to be relatively narrow state with a width of only a few to around ten MeV, and they mainly decay into Ξb'π or Ξb*π. In addition, the 2S-wave λ-mode Ξb' states may also mainly decay into the 1P-wave Ξb baryon via the pionic decay processes.
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