paper

Isospin violation in via hadronic loops

arXiv:0706.0384 · doi:10.1103/PhysRevD.77.014010

Abstract

In this work, we study the isospin-violating decay of 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 of the branching ratio for . The intermediate meson exchanges, (intermediate interaction via exchanges), (intermediate rescattering via kaon exchanges), and (intermediate rescattering via 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 , where we find contributions from the , and loops are negligibly small, and the isospin violation is likely to be dominated by the EM transition.

Revised version resubmitted to PRD; Additional loop contributions included; Conclusion unchanged

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