English

$\Lambda_c N$ interaction in leading order covariant chiral effective field theory

Nuclear Theory 2021-01-04 v1 High Energy Physics - Phenomenology

Abstract

We study the ΛcN\Lambda_c N interaction in the covariant chiral effective field theory (ChEFT) at leading order. All the relevant low-energy constants are determined by fitting to the lattice QCD simulations from the HAL QCD Collaboration. Extrapolating the results to the physical point, we show that the ΛcN\Lambda_c N interaction is weakly attractive in the 1S0^1S_0 channel, but in the 3S1^3S_1 channel, it is only attractive at extremely low energies and soon turns repulsive for larger laboratory energy. Furthermore, we show that the neglect of the 3S13D1^3S_1-{}^3D_1 coupling provided by the leading order covariant ChEFT would result in an attractive interaction in the 3S1^3S_1 channel at the physical point, which coincides with the previous non-relatistic ChEFT study. As a byproduct, we predict the 3D1^3D_1 phase shifts and the mixing angel ε1\varepsilon_1, which can be checked by future lattice QCD simulations. In addition, we compare the ΛcN\Lambda_c N interaction with the ΛN\Lambda N and NNNN interactions to study how the baryon-nucleon (BNBN) interactions evolve as a function of the baryon mass with the replacement of a light quark by a strange or charm quark in the baryon (BB).

Keywords

Cite

@article{arxiv.2010.06916,
  title  = {$\Lambda_c N$ interaction in leading order covariant chiral effective field theory},
  author = {Jing Song and Yang Xiao and Zhi-Wei Liu and Chun-Xuan Wang and Kai-Wen Li and Li-Sheng Geng},
  journal= {arXiv preprint arXiv:2010.06916},
  year   = {2021}
}

Comments

10 pages, 7 figures

R2 v1 2026-06-23T19:20:06.050Z