Study of $Λ_b\to Λ(φ,η^{(\prime)})$ and $Λ_b\to ΛK^+K^-$ decays
Abstract: We study the charmless two-body $\Lambda_b\to \Lambda (\phi,\eta{(\prime)})$ and three-body $\Lambda_b\to \Lambda K+K- $ decays. We obtain ${\cal B}(\Lambda_b\to \Lambda\phi)=(3.53\pm 0.24)\times 10{-6}$ to agree with the recent LHCb measurement. However, we find that ${\cal B}(\Lambda_b\to \Lambda(\phi\to)K+ K-)=(1.71\pm 0.12)\times 10{-6}$ is unable to explain the LHCb observation of ${\cal B}(\Lambda_b\to\Lambda K+ K-)=(15.9\pm 1.2\pm 1.2\pm 2.0)\times 10{-6}$, which implies the possibility for other contributions, such as that from the resonant $\Lambda_b\to K- N,\,N^\to\Lambda K+$ decay with $N*$ as a higher-wave baryon state. For $\Lambda_b\to \Lambda \eta{(\prime)}$, we show that ${\cal B}(\Lambda_b\to \Lambda\eta,\,\Lambda\eta\prime)= (1.47\pm 0.35,1.83\pm 0.58)\times 10{-6}$, which are consistent with the current data of $(9.3{+7.3}_{-5.3},<3.1)\times 10{-6}$, respectively. Our results also support the relation of ${\cal B}(\Lambda_b\to \Lambda\eta) \simeq {\cal B}(\Lambda_b\to\Lambda\eta\prime)$, given by the previous study.
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