We study the structure-dependent contributions to the radiative baryonic B
decays of BβBBΛβ²Ξ³ in the standard model. We show
that the decay branching ratios of Br(BβBBΛβ²Ξ³) are
O(10β7), which are larger than the estimated values of O(10β9)
induced from inner bremsstrahlung effects of the corresponding two-body modes.
In particular, we find that Br(BββΞpΛβΞ³) is around 1Γ10β6, which is close to the pole model estimation but smaller than
the experimental measurement from BELLE.Comment: 11 pages, 2 figures, Revtex4, new fitting is include
We consider X(3872) and Y(4140) as the vector tetraquark states of
Xc0ββ‘ccΛuuΛ(ddΛ) and ccΛssΛ, respectively. By
connecting ΞbββXc0βΞ to BββXc0βKβ, we predict that
the branching ratios of ΞbββΞ(X(3872)0β)J/ΟΟ+Οβ
and ΞbββΞ(Y(4140)β)J/ΟΟ are (5.2Β±1.8)Γ10β6 and (4.7Β±2.6)Γ10β6, which are accessible to the
experiments at the LHCb, respectively. The measurements of these Ξbβ
modes would be the first experimental evidences for the XYZ states in
baryonic decays.Comment: 7 pages, 1 figure
We study the three-body Ξbβ decays of ΞbββJ/ΟpM with
M=Kβ and Οβ. The two new states Pc1ββ‘Pcβ(4380)+ and Pc2ββ‘Pcβ(4450)+ observed recently as
the resonances in the J/Οp invariant mass spectrum of ΞbββJ/ΟpKβ can be identified to consist of five quarks, uudccΛ, being
consistent with the existence of the pentaquark states. We argue that, in the
doubly charmful Ξbβ decays of ΞbββJ/ΟpKβ through bβccΛs, apart from those through the non-resonant ΞbββpKβ and
resonant ΞbββΞββpKβ transitions, the third contribution
with the non-factorizable effects is not the dominant part for the resonant
ΞbββKβPc1,c2β,Pc1,c2ββJ/Οp processes,
such that we propose that the Pc1,c2β productions are mainly from
the charmless Ξbβ decays through bβuΛus, in which the ccΛ content in Pc1,c2β arises from the intrinsic charms within the
Ξbβ baryon. We hence predict the observables related to the branching
ratios and the direct CP violating asymmetries to be B(ΞbββΟβ(Pc1,c2ββ)J/Οp)/B(ΞbββKβ(Pc1,c2ββ)J/Οp)=0.8Β±0.1, ACPβ(ΞbββΟβ(Pc1,c2ββ)J/Οp)=(β3.9Β±0.2)%, and ACPβ(ΞbββKβ(Pc1,c2ββ)J/Οp)=(5.8Β±0.2)%, which can alleviate the
inconsistency between the theoretical expectations from the three contributions
in the doubly charmful Ξbβ decays and the observed data.Comment: 10 pages, 2 figures, revised version accepted by PL