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Quark model study of multiquark states

Quark model study of multiquark states
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摘要 The six- and four-quark systems are studied in emphasized that the color confinement used in multiquark the framework of constituent quark models. It is system should be different from the one used in two- or three-quark system. For six-quark system, we look for △△ and △△ dibaryon resonances by calculating NN scattering phase shifts with explicit coupling to these dibaryon channels in quark delocalization and color screening model. The model gives a good description of low-energy NN properties and predicts IJP = 03+ and 01+ △△resonances, which can be promising candidates for the isoscalar ABC structure reported by the CELSIUS-WASA Collaboration. For tetraquark system, a flux-tube quark model with multi-body confinement interaction is employed to study Y(2175) as a tetraquark state. The Y(2175) with diquark-antidiquark structure has energy 2174 MeV which is very consistent with experimental data. The calculation shows that multi-body confinement potential may play a vital role in the multiquark system. The six- and four-quark systems are studied in emphasized that the color confinement used in multiquark the framework of constituent quark models. It is system should be different from the one used in two- or three-quark system. For six-quark system, we look for △△ and △△ dibaryon resonances by calculating NN scattering phase shifts with explicit coupling to these dibaryon channels in quark delocalization and color screening model. The model gives a good description of low-energy NN properties and predicts IJP = 03+ and 01+ △△resonances, which can be promising candidates for the isoscalar ABC structure reported by the CELSIUS-WASA Collaboration. For tetraquark system, a flux-tube quark model with multi-body confinement interaction is employed to study Y(2175) as a tetraquark state. The Y(2175) with diquark-antidiquark structure has energy 2174 MeV which is very consistent with experimental data. The calculation shows that multi-body confinement potential may play a vital role in the multiquark system.
出处 《Chinese Physics C》 SCIE CAS CSCD 2009年第12期1285-1290,共6页 中国物理C(英文版)
基金 Supported by National Natural Science Foundation of China (10775072) Research Fund for the Doctoral Program of Higher Education of China (20070319007)
关键词 quark model DIBARYON TETRAQUARK color confinement multibody interaction quark model, dibaryon, tetraquark, color confinement, multibody interaction
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  • 1Jaffe R L. Phys. Rev. Lett., 1977, 38:195--198.
  • 2Bashkanov M, Bargholtz C, Berlowski Met al. Phys. Rev. Lett., 2009, 102: 052301:1--4.
  • 3Aubert B et al (BABAR collaboration). Phys. Rev. Lett., 2003, 90: 242001: 1--7.
  • 4Choi S K et al.(Belle collaboration). Phys. Rev. Lett., 2003, 91: 262001: 1--6.
  • 5Evdokimov A V et al (SELEX collaboration). Phys. Rev. Lett., 2004, 93: 242001: 1--5.
  • 6Aubert B et M (BABAR collaboration). Phys. Rev. Lett., 2005, 95: 142001: 1--5.
  • 7Jaffe R L, Phys. Rep., 2005, 409:1--45.
  • 8Suganuma H, Tsumura K, Ishii N, Okiharu F. Prog. Theor. Phys., 2007, 168(Suppl): 168--172.
  • 9Savage M J. arXiv: nucl-th/0612063v2.
  • 10Kaiser N, Grestendorfer S, Weise W. Nucl. Phys. A, 1998, 637: 395--420.

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