Quasi-two-body decays $B_{(s)} \to P D_0^*(2400) \to P D π$ in the perturbative QCD approach (1906.09387v2)
Abstract: We study the quasi-two-body decays $B\to P D{\ast}_0(2400) \to P D\pi $ with $P=(\pi, K, \eta, \eta{\prime})$ in the perturbative QCD factorization approach. The predicted branching fractions for the considered decays are in the range of $10{-9}$-$10{-4}$. The strong Cabibbo-Kobayashi-Maskawa (CKM) suppression factor $R_{CKM}\approx \lambda4 (\bar{\rho}2 + \bar{\eta}2) \approx 3\times 10{-4}$ results in the great difference of the branching ratios for the decays with $D_0*$ and $\bar{D}0*$ as the intermediate states. The ratio $R{\bar{D}0{*0}}$ between the decays $B0 \to \bar{D}_0{*0} K0\to D-\pi+K0$ and $B0 \to \bar{D}_0{*0}\pi0 \to D-\pi+\pi0$ is about $0.091{+0.003}{-0.005}$, consistent with the flavour-$SU$(3) symmetry result. The ratio for the branching fractions is found to be $1.10{+0.05}_{-0.02}$ between $\mathcal{B}(B_s0\to D_0{*+}K-\to D0\pi+K-)$ and $\mathcal{B}(B0\to D_0{*+} \pi-\to D0\pi+ \pi-)$ and to be $1.03{+0.06}_{-0.07}$ between $\mathcal{B}(B_s0\to\bar{D}_0{*0} \bar{K}0\to D-\pi+ \bar{K}0)$ and $2\mathcal{B}(B0\to \bar{D}_0{*0}\pi0\to D-\pi+\pi0)$. The predictions in this work can be tested by the future experiments.
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