TY - JOUR
T1 - Emergence of a Complete Heavy-Quark Spin Symmetry Multiplet
T2 - Seven Molecular Pentaquarks in Light of the Latest LHCb Analysis
AU - Liu, Ming Zhu
AU - Pan, Ya Wen
AU - Peng, Fang Zheng
AU - Sánchez, Mario Sánchez
AU - Geng, Li Sheng
AU - Hosaka, Atsushi
AU - Valderrama, Manuel Pavon
N1 - Publisher Copyright:
© 2019 authors. Published by the American Physical Society.
PY - 2019/6/21
Y1 - 2019/6/21
N2 - A recent analysis by the LHCb Collaboration suggests the existence of three narrow pentaquarklike states - the Pc(4312), Pc(4440), and Pc(4457) - instead of just one in the previous analysis [the Pc(4450)]. The closeness of the Pc(4312) to the Dςc threshold and the Pc(4440) and Pc(4457) to the D∗ςc threshold suggests a molecular interpretation of these resonances. We show that these three pentaquarklike resonances can be naturally accommodated in a contact-range effective field theory description that incorporates heavy-quark spin symmetry. This description leads to the prediction of all the seven possible S-wave heavy antimeson-baryon molecules [that is, there should be four additional molecular pentaquarks in addition to the Pc(4312), Pc(4440), and Pc(4457)], providing the first example of a heavy-quark spin symmetry molecular multiplet that is complete. If this is confirmed, it will not only give us an impressive example of the application of heavy-quark symmetries and effective field theories in hadron physics, it will also uncover a clear and powerful ordering principle for the molecular spectrum, reminiscent of the SU(3)-flavor multiplets to which the light hadron spectrum conforms.
AB - A recent analysis by the LHCb Collaboration suggests the existence of three narrow pentaquarklike states - the Pc(4312), Pc(4440), and Pc(4457) - instead of just one in the previous analysis [the Pc(4450)]. The closeness of the Pc(4312) to the Dςc threshold and the Pc(4440) and Pc(4457) to the D∗ςc threshold suggests a molecular interpretation of these resonances. We show that these three pentaquarklike resonances can be naturally accommodated in a contact-range effective field theory description that incorporates heavy-quark spin symmetry. This description leads to the prediction of all the seven possible S-wave heavy antimeson-baryon molecules [that is, there should be four additional molecular pentaquarks in addition to the Pc(4312), Pc(4440), and Pc(4457)], providing the first example of a heavy-quark spin symmetry molecular multiplet that is complete. If this is confirmed, it will not only give us an impressive example of the application of heavy-quark symmetries and effective field theories in hadron physics, it will also uncover a clear and powerful ordering principle for the molecular spectrum, reminiscent of the SU(3)-flavor multiplets to which the light hadron spectrum conforms.
UR - https://www.scopus.com/pages/publications/85068251534
U2 - 10.1103/PhysRevLett.122.242001
DO - 10.1103/PhysRevLett.122.242001
M3 - 文章
C2 - 31322380
AN - SCOPUS:85068251534
SN - 0031-9007
VL - 122
JO - Physical Review Letters
JF - Physical Review Letters
IS - 24
M1 - 242001
ER -