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Implications of heavy quark spin symmetry on heavy meson hadronic molecules

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arxiv 0904.3338 v1 pith:ULSMX5PJ submitted 2009-04-21 hep-ph hep-ex

classification hep-phhep-ex
keywords heavymesonmoleculesquarkhadronicspinstatesymmetry
verification ladder T0 review T1 audit T2 compute T3 formal

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In recent years, many heavy mesons and charmonia were observed which do not fit in the conventional quark model expectations. Some of them are proposed to be hadronic molecules. Here we investigate the consequences of heavy quark spin symmetry on these heavy meson hadronic molecules. Heavy quark spin symmetry enables us to predict new heavy meson molecules and provides us with a method to test heavy meson molecule assumptions of some newly observed states. In particular, we predict an \eta_c'f_0(980) bound state as the spin-doublet partner of the Y(4660) proposed as a \psi'f_0(980) bound state with a mass of 4616^{+5}_{-6} MeV and the prominent decay mode \eta_c'\pi \pi. The width is predicted to be \Gamma(\eta_c'\pi\pi)=60\pm30 MeV. The pi^+\pi^- invariant mass spectrum and the line shape are calculated. We suggest to search for this state in B^{\pm}-->\eta_c'K^{\pm}\pi^+\pi^-, whose branching fraction is expected to be large.

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  1. Updated analysis of charmonium states in a relativized quark potential model

    hep-ph 2025-04 conditional novelty 5.0 of 10

    A recalibrated relativized quark model assigns chi_c1(4010), chi_c1(4274), chi_c0(4500), and chi_c0(4700) to conventional charmonium states and predicts chi_c0(2P) near 3851 MeV.

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