57 research outputs found

    Two body non-leptonic Λb\Lambda_b decays in quark model with factorization ansatz

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    The two body non-leptonic Λb\Lambda_b decays are analyzed in factorization approximation, using quark model, Ο=1/Nc\xi = 1 / N_c as a free parameter. It is shown that the experimental branching ratio for Λb⟶ΛJ/ψ\Lambda_b \longrightarrow \Lambda {J/\psi} restricts Ο\xi and this ratio can be understood for a value of Ο\xi which lies in the range 0≀Ο≀0.5 0 \leq \xi \leq 0.5 suggested by two body B meson decays. The branching ratios for Λb⟶ΛcDs∗(Ds)\Lambda_b \longrightarrow \Lambda_{c} D^*_s(D_s) are predicted to be larger than the previous estimates. Finally it is pointed that CKM-Wolfenstein parameter ρ2+η2\rho^2 + \eta^2, where η\eta is CP phase, can be determined from the ratio of widths of Λb⟶ΛDˉ\Lambda_b \longrightarrow \Lambda \bar{D} and Λb⟶ΛJ/ψ\Lambda_b \longrightarrow \Lambda {J/\psi} or that of Λb⟶pDs\Lambda_b \longrightarrow p D_s and Λb⟶ΛcDs\Lambda_b \longrightarrow \Lambda_c D_s independent of the parameter Ο\xi.Comment: 18 pages, latex, 1 figure available on request, please send any questions or comments to [email protected]

    Two body non-leptonic Λb\Lambda_b decays in the large NcN_c limit

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    The two body non-leptonic Λb\Lambda_b decays are analyzed in the HQET with factorization approximation and large NcN_c limit. In this limit, Λb\Lambda_b and Λc\Lambda_c baryons can be treated as the bound states of chiral soliton and heavy meson, and consequently the Isgur-Wise function comes out in a straight forward manner. The results obtained remain well below their previously predicted upper limit
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