4.7 Article

Systematical study of ?c-like molecular states from interactions ?c(',*)K(*) and ?(*)D(*)

期刊

PHYSICAL REVIEW D
卷 105, 期 9, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.105.094036

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资金

  1. Postgraduate Research and Practice Innovation Program of Jiangsu Province [KYCX21_1323]
  2. National Natural Science Foundation of China [11675228]

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This study systematically investigates the c-like molecular states using a quasipotential Bethe-Salpeter equation approach. The relevant interactions are described by light meson exchanges with the help of effective Lagrangians. Coupled-channel calculations are performed to find possible molecular states and their couplings. The results suggest the existence of isoscalar and isovector states that can be produced from specific interactions, and the couplings of these states to different channels. High-precision measurements are needed to confirm or search for these molecular states.
In this work, the c-like molecular states are systematically investigated in a quasipotential BetheSalpeter equation approach. The relevant interactions ?????;0?? described by light meson exchanges with the help of the effective Lagrangians with SU(3), chiral, and heavy quark symmetries. The obtained potential kernels of considered interactions are inserted into the quasipotential Bethe-Salpeter equation, and coupled-channel calculations are performed to find possible molecular states and its couplings to the channels considered. The results suggest that an isoscalar state can be produced from the ???c K?? interaction with spin parity 3=2???, which can be related to state c??3120??. And its isoscalar partner is predicted with a dominant decay in the ???c?? channel. The isoscalar and isovector states with 1=2??? can be produced from the 0c K?? interaction with a threshold close to the mass of the c??3050?? and c??3065??. Their couplings to the c K?? channel are very weak, and the isovector one has strong coupling to c??. High-precision measurement is helpful to confirm or search such molecular states. Experimental search of states with higher masses generated from c ??K??? and ???D??????? are also suggested by the current results.

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