English

The $X_0(2900)$ and its heavy quark spin partners in molecular picture

High Energy Physics - Phenomenology 2021-02-03 v3

Abstract

The X0(2900)X_0(2900) observed by the LHCb Collaboration recently in the DK+D^-K^+ invariant mass of the B+D+DK+B^+\to D^+D^-K^+ process is the first exotic candidate with four different flavors, which opens a new era for the hadron community. Under the assumption that the X0(2900)X_0(2900) is a I(JP)=0(0+)I(J^P)=0(0^+) DˉK\bar{D}^*K^* hadronic molecule, we extract the whole heavy-quark symmetry multiplet formed by the (Dˉ,Dˉ)\left(\bar{D},\bar{D}^*\right) doublet and the KK^* meson. For the bound state case, there would be two additional I(JP)=0(1+)I(J^P)=0(1^+) hadronic molecules associated with the DˉK\bar{D}K^* and DˉK\bar{D}^*K^* channels as well as one additional I(JP)=0(2+)I(J^P)=0(2^+) DˉK\bar{D}^*K^* molecule. In the light quark limit, they are 36.66 MeV36.66~\mathrm{MeV} and 34.22 MeV34.22~\mathrm{MeV} below the DˉK\bar{D}K^* and DˉK\bar{D}^*K^* thresholds, respectively, which are unambiguously fixed by the mass position of the X0(2900)X_0(2900). For the virtual state case, there would be one additional I(JP)=0(1+)I(J^P)=0(1^+) hadronic molecule strongly coupling to the DˉK\bar{D}K^* channel and one additional I(JP)=0(2+)I(J^P)=0(2^+) DˉK\bar{D}^*K^* molecule. Searching for these heavy quark spin partners will help shed light on the nature of the X0(2900)X_0(2900).

Keywords

Cite

@article{arxiv.2008.06894,
  title  = {The $X_0(2900)$ and its heavy quark spin partners in molecular picture},
  author = {Mei-Wei Hu and Xue-Yi Lao and Pan Ling and Qian Wang},
  journal= {arXiv preprint arXiv:2008.06894},
  year   = {2021}
}

Comments

published in Chinese Physics C