English

Photoproduction $\gamma p \to K^+\Lambda(1520)$ in an effective Lagrangian approach

High Energy Physics - Phenomenology 2021-02-12 v2 Nuclear Theory

Abstract

The data on differential cross sections and photon-beam asymmetries for the γpK+Λ(1520)\gamma p \to K^+\Lambda(1520) reaction have been analyzed within a tree-level effective Lagrangian approach. In addition to the tt-channel KK and KK^\ast exchanges, the uu-channel Λ\Lambda exchange, the ss-channel nucleon exchange, and the interaction current, a minimal number of nucleon resonances in the ss channel are introduced in constructing the reaction amplitudes to describe the data. The results show that the experimental data can be well reproduced by including either the N(2060)5/2N(2060)5/2^- or the N(2120)3/2N(2120)3/2^- resonance. In both cases, the contact term and the KK exchange are found to make significant contributions, while the contributions from the KK^\ast and Λ\Lambda exchanges are negligible in the former case and considerable in the latter case. Measurements of the data on target asymmetries are called on to further pin down the resonance contents and to clarify the roles of the KK^\ast and Λ\Lambda exchanges in this reaction.

Keywords

Cite

@article{arxiv.2101.08988,
  title  = {Photoproduction $\gamma p \to K^+\Lambda(1520)$ in an effective Lagrangian approach},
  author = {Neng-Chang Wei and Yu Zhang and Fei Huang and De-Min Li},
  journal= {arXiv preprint arXiv:2101.08988},
  year   = {2021}
}

Comments

12 pages, 8 figures; version published in Phys. Rev. D