$D^{(\ast)}N$ interaction and the structure of $\Sigma_c(2800)$ and $\Lambda_c(2940)$ in chiral effective field theory
Abstract
We study the and interactions to probe the inner structure of and with the chiral effective field theory to the next-to-leading order. We consider the contact term, one-pion-exchange and two-pion-exchange contributions to characterize the short-, long- and mid-range interactions of the systems. The low energy constants of the systems are related to those of the interaction with quark level Lagrangian that inspired by the resonance saturation model. The degree of freedom is also included in the loop diagrams. The attractive potential in the channel is too weak to form bound state, which indicates the explanation of as the compact charmed baryon is more reasonable. Meanwhile, the potentials of the isoscalar channels are deep enough to yield the molecular states. We obtain the masses of the , and systems to be MeV, MeV and MeV, respectively. The is probably the isoscalar molecule considering its low mass puzzle. Besides, the signal might contain the spin- and spin- two structures, which can qualitatively explain the significant decay ratio to and . We also study the systems and predict the possible molecular states in the isoscalar channels. We hope experimentalists could hunt for the open charmed molecular pentaquarks in the final state.
Keywords
Cite
@article{arxiv.2003.05688,
title = {$D^{(\ast)}N$ interaction and the structure of $\Sigma_c(2800)$ and $\Lambda_c(2940)$ in chiral effective field theory},
author = {Bo Wang and Lu Meng and Shi-Lin Zhu},
journal= {arXiv preprint arXiv:2003.05688},
year = {2020}
}
Comments
11 pages, 4 figures and 4 tables