Recently, a hint for dibaryon NΔ(D21) was observed at WASA-AT-COSY with a mass about 30±10 MeV below the NΔ threshold. It has a relatively small binding energy compared with the d∗(2380) and a width close to the width of the Δ baryon, which suggests that it may be a dibaryon in a molecular state picture. In this work, we study the possible S-wave molecular states from the NΔ interaction within the quasipotential Bethe-Salpeter equation approach. The interaction is described by exchanging π, ρ, and ω mesons. With reasonable parameters, a D21 bound state can be produced from the interaction. The results also suggest that there may exist two more possible D12 and D22 states with smaller binding energies. The π exchange is found to play the most important role to bind two baryons to form the molecular states. An experimental search for possible NΔ(D12) and NΔ(D22) states will be helpful for understanding the hint of the dibaryon NΔ(D21).
@article{arxiv.2007.15878,
title = {Possible molecular states from the $N\Delta$ interaction},
author = {Zhi-Tao Lu and Han-Yu Jiang and Jun He},
journal= {arXiv preprint arXiv:2007.15878},
year = {2020}
}