English

Resolving the low mass puzzle of $\Lambda_c(2940)^+$

High Energy Physics - Phenomenology 2020-04-07 v3 High Energy Physics - Experiment

Abstract

For the long standing low mass puzzle of Λc(2940)+\Lambda_c(2940)^+, we propose an unquenched picture. Our calculation explicitly shows that the mass of the Λc(2P,3/2)\Lambda_c(2P,3/2^-) state can be lowered down to be consistent with the experimental data of Λc(2940)+\Lambda_c(2940)^+ by introducing the DND^*N channel contribution. Additionally, we give a semi-quantitative analysis to illustrate why the Λc(2940)+\Lambda_c(2940)^+ state has a narrow width. It means that the low mass puzzle of Λc(2940)+\Lambda_c(2940)^+ can be solved. What is more important is that we predict a mass inversion relation for the 2P2P Λc+\Lambda_{c}^+ states, i.e., the Λc(2P,1/2)\Lambda_c(2P,1/2^-) state is higher than the Λc(2P,3/2)\Lambda_c(2P,3/2^-), which is totally different from the result of conventional quenched quark model. It provides a criterion to test such an unquenched scenario for Λc(2940)+\Lambda_c(2940)^+. We expect the future experimental progress from the LHCb and Belle II.

Keywords

Cite

@article{arxiv.1910.14545,
  title  = {Resolving the low mass puzzle of $\Lambda_c(2940)^+$},
  author = {Si-Qiang Luo and Bing Chen and Zhan-Wei Liu and Xiang Liu},
  journal= {arXiv preprint arXiv:1910.14545},
  year   = {2020}
}

Comments

5 pages, 2 figures. Accepted by Eur. Phys. J. C for publication

R2 v1 2026-06-23T12:01:01.262Z