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Tetraquarks and Pentaquarks from Quark Model Perspective

期刊

SYMMETRY-BASEL
卷 15, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/sym15071298

关键词

quark model; tetraquark; pentaquark; color structure; channel coupling

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This article focuses on the recent experimental and theoretical progress on exotic states from the perspective of the quark model. While lattice quantum chromodynamics may provide the final answer, phenomenological models remain powerful tools to explore and gain insights into the exotic states and hadron phenomenology.
According to the classification of the quark model, the hadrons going beyond three-quark baryon and quark-antiquark meson pictures are called exotic hadrons. Many new hadrons have been observed since 2003, some of which exhibit exotic behaviors. There are a lot of excellent review articles on exotic hadrons available so far; the present article tries to focus on the recent experimental and theoretical progress on the exotic states from the perspective of the quark model. Although lattice quantum chromodynamics may give the final answer of the problem, the phenomenological models are still powerful tools to explore the exotic states and to provide insight on the phenomenology of hadrons. The spatial and color structures of multiquark states and the channel coupling calculation are emphasized through reviewing some bound states, molecular and color structure resonances. Finally, the unquench effects of some exotic states are reviewed. With the accumulation of experimental data on multiquark states and inspiration of underlying theory developments, more reasonable phenomenological models incorporating multi-body interactions and high Fock components to unify the description of normal hadrons and exotic hadrons are expectable.

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