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    NDND and NBNB systems in quark delocalization color screening model

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    The NDND and NBNB systems with I=0I=0 and 11, JP=12±J^{P}=\frac{1}{2}^{\pm}, 32±\frac{3}{2}^{\pm}, and 52±\frac{5}{2}^{\pm} are investigated within the framework of quark delocalization color screening model. The results show that all the positive parity states are unbound. By coupling to the NDND^{*} channel, the state NDND with I=0, JP=12I=0,~J^{P}=\frac{1}{2}^{-} can form a bound state, which can be invoked to explain the observed Σ(2800)\Sigma(2800) state. The mass of the NDND^{*} with I=0, JP=32I=0,~J^{P}=\frac{3}{2}^{-} is close to that of the reported Λc(2940)+\Lambda_{c}(2940)^{+}, which indicates that Λc(2940)+\Lambda_{c}(2940)^{+} can be explained as a NDND^{*} molecular state in QDCSM. Besides, the ΔD\Delta D^{*} with I=1, JP=52I=1,~J^{P}=\frac{5}{2}^{-} is also a possible resonance state. The results of the bottom case of NBNB system are similar to those of the NDND system. Searching for these states will be a challenging subject of experiments.Comment: 7 pages, 3 figures. arXiv admin note: text overlap with arXiv:1510.04648, arXiv:1311.473
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