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arXiv:2501.09914·v2·High Energy Physics — Phenomenology

Kaon-induced production of strange hidden-charm molecular pentaquarks from proton

Shu Chen🇨🇳 · Jun-Tao Zhu🇨🇳 · Shu-Yi Kong🇨🇳 · Jun He🇨🇳

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Abstract

In this work, we investigate the kaon-induced production of strange hidden-charm pentaquark states, including the and observed by the LHCb collaboration. Coupled-channel interactions involving the channels , , , , and are studied using effective Lagrangians to describe these interactions. The potential kernels are constructed within the one-boson-exchange model and implemented into the quasipotential Bethe-Salpeter equation to calculate the scattering amplitudes. From these amplitudes, the partial-wave cross sections for kaon-induced production are predicted alongside the poles corresponding to strange hidden-charm molecular pentaquarks. The analysis reveals complex structures in the cross sections due to molecular states. A structure near the threshold is predicted in the channel, corresponding to . Both molecular states near the threshold with and , associated with , produce peaks in the channel, which vary significantly with the cutoff. Additionally, a molecular state with near the threshold gives rise to a peak in the channel. In the higher energy region, from 4350 to 4550 MeV, although the cross sections in the channels are substantial, no distinct structures corresponding to strange hidden-charm pentaquarks are identified, apart from some threshold-related cusps. These results provide valuable theoretical insights and serve as a foundation for future experimental studies of strange hidden-charm pentaquarks using kaon beams at J-PARC and JLab.

Comments: 9 pages, 4 figures

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