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Constraint on K Kbar compositeness of the a0(980) and f0(980) resonances from their mixing intensity

Abstract

Structure of the a0(980)a_{0}(980) and f0(980)f_{0}(980) resonances is investigated with the a0(980)a_{0}(980)-f0(980)f_{0}(980) mixing intensity from the viewpoint of compositeness, which corresponds to the amount of two-body states composing resonances as well as bound states. For this purpose we first formulate the a0(980)a_{0}(980)-f0(980)f_{0}(980) mixing intensity as the ratio of two partial decay widths of a parent particle, in the same manner as the recent analysis in BES experiments. Calculating the a0(980)a_{0}(980)-f0(980)f_{0}(980) mixing intensity with the existing Flatte parameters from experiments, we find that many combinations of the a0(980)a_{0}(980) and f0(980)f_{0}(980) Flatte parameters can reproduce the experimental value of the a0(980)a_{0}(980)-f0(980)f_{0}(980) mixing intensity by BES. Next, from the same Flatte parameters we also calculate the KKˉK \bar{K} compositeness for a0(980)a_{0}(980) and f0(980)f_{0}(980). Although the compositeness with the correct normalization becomes complex in general for resonance states, we find that the Flatte parameters for f0(980)f_{0}(980) imply large absolute value of the KKˉK \bar{K} compositeness and the parameters for a0(980)a_{0}(980) lead to small but nonnegligible absolute value of the KKˉK \bar{K} compositeness. Then, connecting the mixing intensity and the KKˉK \bar{K} compositeness via the a0(980)a_{0}(980)- and f0(980)f_{0}(980)-KKˉK \bar{K} coupling constants, we establish a relation between them. As a result, a small mixing intensity indicates a small value of the product of the KKˉK \bar{K} compositeness for the a0(980)a_{0}(980) and f0(980)f_{0}(980) resonances. Moreover, the experimental value of the a0(980)a_{0}(980)-f0(980)f_{0}(980) mixing intensity implies that the a0(980)a_{0}(980) and f0(980)f_{0}(980) resonances cannot be simultaneously KKˉK \bar{K} molecular states.Comment: 15 pages, 6 figures, version accepted for publication in PR

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