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Effects of hadronic molecule N(2080)3/2N(2080)3/2^- on K+ΛK^{*+}Λ photoproduction

Published 4 Oct 2025 in hep-ph and nucl-th | (2510.03673v1)

Abstract: In our previous work [Phys. Rev. C {\bf 101}, 014003 (2020)], we have analyzed all available data on differential cross sections and spin density matrix elements for the γpK<sup></sup>+Λ\gamma p \to K<sup>{\ast</sup> +} \Lambda reaction using an effective Lagrangian approach. There, the tt-channel KK, K<sup>K<sup>*, and κ\kappa exchanges, the uu-channel Λ\Lambda, Σ\Sigma, and Σ<sup>\Sigma<sup>* exchanges, the ss-channel NN, N(2060)5/2<sup>N(2060)5/2<sup>-, and N(2000)5/2<sup>+N(2000)5/2<sup>+ exchanges, and the interaction current were taken into account in constructing the reaction amplitudes. It was found that, overall, the agreement of the theoretical results with the corresponding data is fairly good. However, noticeable discrepancies between the model results and the data on spin density matrix elements ρ00\rho_{00} are still observed in the center-of-mass energy region around W2.08W \approx 2.08 GeV, indicating the need for additional reaction mechanisms. On the other hand, the hidden-strange pentaquark-like state N(2080)3/2<sup>N(2080)3/2<sup>-, which is proposed to be a K<sup>ΣK<sup>*\Sigma molecular state as the strange partner of Pc(4457)P_c(4457) hadronic molecule, has been found to play quite active roles in reproducing the data for K<sup>+Σ<sup>0K<sup>{*+}\Sigma<sup>0, K<sup>0Σ<sup>+K<sup>{*0}\Sigma<sup>+, and ϕp\phi p photoproduction reactions. Based on these observations, in the present work, we reanalyze the data for the γpK<sup></sup>+Λ\gamma p \to K<sup>{\ast</sup> +} \Lambda reaction by incorporating the pentaquark-like state N(2080)3/2<sup>N(2080)3/2<sup>- in our previously proposed model. The results show that with the inclusion of the contributions of N(2080)3/2<sup>N(2080)3/2<sup>-, the quality of the theoretical description of the γpK<sup>+Λ\gamma p \to K<sup>{*+}\Lambda data can be considerably improved.

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