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Structure of hadron resonances with a nearby zero of the amplitude

机译:强子共振的结构,其振幅接近零

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We discuss the relation between the analytic structure of the scattering amplitude and the origin of an eigenstate represented by a pole of the amplitude. If the eigenstate is not dynamically generated by the interaction in the channel of interest, the residue of the pole vanishes in the zero coupling limit. Based on the topological nature of the phase of the scattering amplitude, we show that the pole must encounter with the Castillejo-Dalitz-Dyson (CDD) zero in this limit. It is concluded that the dynamical component of the eigenstate is small if a CDD zero exists near the eigenstate pole. We show that the line shape of the resonance is distorted from the Breit-Wigner form as an observable consequence of the nearby CDD zero. Finally, studying the positions of poles and CDD zeros of the K ˉ N ? π Σ amplitude, we discuss the origin of the eigenstates in the Λ ( 1405 ) region.
机译:我们讨论了散射振幅的解析结构与以振幅的极点表示的本征态原点之间的关系。如果本征态不是通过感兴趣的通道中的相互作用动态生成的,则极点的残差将在零耦合极限处消失。基于散射振幅相位的拓扑性质,我们表明极点必须在此极限处与Castillejo-Dalitz-Dyson(CDD)零相遇。结论是,如果CDD零位于本征态极点附近,则本征态的动力学分量很小。我们显示,共振的线形从Breit-Wigner形式失真,这是附近CDD零的可观察结果。最后,研究KˉN?的极点和CDD零点的位置。 πΣ振幅,我们讨论Λ(1405)区域中本征态的起源。

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