English

$D^{(\ast)}N$ interaction and the structure of $\Sigma_c(2800)$ and $\Lambda_c(2940)$ in chiral effective field theory

High Energy Physics - Phenomenology 2020-06-02 v2 High Energy Physics - Experiment Nuclear Theory

Abstract

We study the DNDN and DND^\ast N interactions to probe the inner structure of Σc(2800)\Sigma_c(2800) and Λc(2940)\Lambda_c(2940) 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 D()ND^{(\ast)}N systems. The low energy constants of the D()ND^{(\ast)}N systems are related to those of the NNˉN\bar{N} interaction with quark level Lagrangian that inspired by the resonance saturation model. The Δ(1232)\Delta(1232) degree of freedom is also included in the loop diagrams. The attractive potential in the [DN]J=1/2I=1[DN]_{J=1/2}^{I=1} channel is too weak to form bound state, which indicates the explanation of Σc(2800)\Sigma_c(2800) 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 [DN]J=1/2I=0[DN]_{J=1/2}^{I=0}, [DN]J=1/2I=0[D^\ast N]_{J=1/2}^{I=0} and [DN]J=3/2I=0[D^\ast N]_{J=3/2}^{I=0} systems to be 2792.02792.0 MeV, 2943.62943.6 MeV and 2938.42938.4 MeV, respectively. The Λc(2940)\Lambda_c(2940) is probably the isoscalar DND^\ast N molecule considering its low mass puzzle. Besides, the Λc(2940)\Lambda_c(2940) signal might contain the spin-12\frac{1}{2} and spin-32\frac{3}{2} two structures, which can qualitatively explain the significant decay ratio to D0pD^0p and Σcπ\Sigma_c\pi. We also study the Bˉ()N\bar{B}^{(\ast)}N systems and predict the possible molecular states in the isoscalar channels. We hope experimentalists could hunt for the open charmed molecular pentaquarks in the Λc+π+π\Lambda_c^+\pi^+\pi^- 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