Prospects for detecting the hidden-strange pentaquarklike state in the reaction
arXiv:2404.11078 · doi:10.1103/PhysRevD.110.014026
Abstract
In this work, the production of the hidden-strange pentaquarklike state via the scattering process is studied by the effective Lagrangian approach. Concretely, we consider the meson exchange of -channel and the nucleon exchange of -channel, which are treated as the background terms, and take into account the contribution of the via the -channel as a signal term. By global fitting of the total and differential cross sections of the process, it is shown that the contributes an obvious peak at the threshold energy point of the differential cross section at the forward angle (), which provides clues to the detection of the by the scattering process. However, due to the limited accuracy of the experimental data, it is an objective limitation for us to determine the properties of the by the scattering process. Therefore, more accurate experimental measurements of the reaction are highly desirable, and we have also proposed that correlation measurements can be performed on J-PARC, AMBER, and future HIKE and HIAF meson beam experiments.
9 pages, 10 figures
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