29,728 research outputs found

    Zb/ZbΥπZ_b/Z_b^\prime \to \Upsilon\pi and hbπh_b \pi decays in intermediate meson loops model

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    With the recent measurement of Zb(10610)Z_b(10610) and Zb(10650)BBˉ+c.c.Z_b(10650)\to B\bar{B}^*+c.c. and BBˉB^*\bar{B}^*, we investigate the transitions from the Zb(10610)Z_b(10610) and Zb(10650)Z_b(10650) to bottomonium states with emission of a pion via intermediate B BB \ {B}^* meson loops. The experimental data can be reproduced in this approach with a commonly accepted range of values for the form factor cutoff parameter α\alpha. The Υ(3S)π\Upsilon(3S)\pi decay channels appear to experience obvious threshold effects which can be understood by the property of the loop integrals. By investigating the α\alpha-dependence of partial decay widths and ratios between different decay channels, we show that the intermediate B BB \ {B}^* meson loops are crucial for driving the transitions of Zb/ZbΥ(nS)πZ_b/Z_b'\to \Upsilon(nS)\pi with n=1,2,3n = 1, 2, 3, and hb(mP)πh_b(mP)\pi with m=1m = 1 and 2.Comment: 9 pages, 5 figure

    Isospin violation in ϕ,J/ψ,ψωπ0\phi, J/\psi, \psi^\prime \to \omega \pi^0 via hadronic loops

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    In this work, we study the isospin-violating decay of ϕωπ0\phi\to \omega\pi^0 and quantify the electromagnetic (EM) transitions and intermediate meson exchanges as two major sources of the decay mechanisms. In the EM decays, the present datum status allows a good constraint on the EM decay form factor in the vector meson dominance (VMD) model, and it turns out that the EM transition can only account for about 1/41/31/4\sim 1/3 of the branching ratio for ϕωπ0\phi\to \omega\pi^0. The intermediate meson exchanges, KKˉ(K)K\bar{K}(K^*) (intermediate KKˉK\bar{K} interaction via KK^* exchanges), KKˉ(K)K\bar{K^*}(K) (intermediate KKˉK\bar{K^*} rescattering via kaon exchanges), and KKˉ(K)K\bar{K^*}(K^*) (intermediate KKˉK\bar{K^*} rescattering via KK^* exchanges), which evade the naive Okubo-Zweig-Iizuka (OZI) rule, serve as another important contribution to the isospin violations. They are evaluated with effective Lagrangians where explicit constraints from experiment can be applied. Combining these three contributions, we obtain results in good agreement with the experimental data. This approach is also extended to J/ψ(ψ)ωπ0J/\psi(\psi^\prime)\to \omega\pi^0, where we find contributions from the KKˉ(K)K\bar{K}(K^*), KKˉ(K)K\bar{K^*}(K) and KKˉ(K)K\bar{K^*}(K^*) loops are negligibly small, and the isospin violation is likely to be dominated by the EM transition.Comment: Revised version resubmitted to PRD; Additional loop contributions included; Conclusion unchange
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