, , , and as triangle singularities
arXiv:1909.03976 · doi:10.1063/5.0008564
Abstract
discovered in , found in , and and observed in are candidates of charged charmonium-like states. All surviving theoretical models interpreted these candidates as four-quark states, until we recently identified a compelling alternative. We discuss that kinematical singularities in triangle loop diagrams induce a resonance-like behavior that can consistently explain the properties (such as spin-parity, mass, width, and Argand plot) of , , and from experiments. In terms of the triangle singularities, we can also naturally understand interesting experimental findings such as the appearance (absence) of ()-like contribution in , and the highly asymmetric shape of the spectrum bump for ; the other theoretical models have not successfully addressed these points. Although Pakhlov et al. proposed another triangle diagram to generate a -like bump, we argue that this scenario is very unlikely.
7 pages, 5 figures, Contribution to the Proceedings for 15th International Conference on Meson-Nucleon Physics and the Structure of the Nucleon (MENU-2019), June 2-7 2019, Pittsburgh, USA
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