Effects of $N(2000){5/2}^+$ on $\gamma p \to K^+ \Lambda(1405)$
Abstract
The photoproduction reaction of is investigated based on an effective Lagrangian approach at the tree-level approximation with the purpose of understanding the reaction mechanism and extracting the resonance contents and the associated resonance parameters in this reaction. Apart from the -channel and exchanges, -channel nucleon () exchange, -channel , , and exchanges, and generalized contact term, the exchanges of a minimum number of resonances in the channel are taken into account in constructing the reaction amplitudes to describe the experimental data. It is found that by introducing the resonance exchange in the channel, one can reproduce the most recent differential cross-section data from the CLAS Collaboration quite well. Further analysis shows that the cross sections of at high energies are dominated by the -channel exchange, while the contributions from the -channel and exchanges are rather significant to the cross sections in the near-threshold energy region. Predictions for the beam and target asymmetries for are given.
Keywords
Cite
@article{arxiv.2102.10404,
title = {Effects of $N(2000){5/2}^+$ on $\gamma p \to K^+ \Lambda(1405)$},
author = {Yu Zhang and Fei Huang},
journal= {arXiv preprint arXiv:2102.10404},
year = {2021}
}
Comments
8 pages, 6 figures; typos corrected; version published in Phys. Rev. C. arXiv admin note: text overlap with arXiv:2002.04213