4.4 Article

Strong decays of χcJ(2P) and χcJ(3P)

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EUROPEAN PHYSICAL JOURNAL A
卷 50, 期 4, 页码 -

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DOI: 10.1140/epja/i2014-14076-y

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  1. National Science Foundation of China [11175088, 11205091, 11035006, 11265017]

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In the framework of the chiral quark model, the mass spectrum of chi cJ (J = 0, 1, 2, n = 1, 2, 3) is studied with the Gaussian expansion method. Using the wave functions obtained in the study of mass spectrum, the open charm two-body strong decay widths of these states are calculated by using the 3 P 0 model. The results show that the masses of ? chi cJ (1P) and chi c2(2P) are consistent with the experimental data. But the strong decay width of chi c2(2P) is three times that of the experimental value. The decay width of chi c1(2P) is sensitive to its mass. In the quark-antiquark picture, the width is about 385 MeV. However, if the channel coupling effects shift its mass to 3872 MeV, its decay width will be around 1 MeV. The possibility of assigning the state X(3872) as ? chi c1(2P) cannot be excluded. To assign X(3915) as chi c0(2P) is disfavored, due to the unmatching of decay channel. For the chi cJ (3P) states, no states have been assigned. The possible candidates of chi c0(3P) are X(4160) and X(4140). Their masses are close to the theoretical ones. The experimental branching ratio of X(4160), Gamma(X(4160)-> DD)/Gamma(X(4160)-> D*Over bar(D)*)<0.09 is compatible with that of chi c0(3P), 0.07. However the broad decay width of X(4160) cannot be explained by the open charm two-body decay. To assign X(4140) as chi c0(3P) is also possible, due to the compatibility of the total decay width, the further measurement of decay modes of X(4140) are expected to justify the assignment.

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