English

Interpreting the $X(2370)$ and $X(2600)$ as light tetraquark states

High Energy Physics - Phenomenology 2025-07-22 v2

Abstract

Inspired by the states X(2370)X(2370) and X(2600)X(2600) reported by the BESIII Collaboration, we systematically investigate the mass spectra of light compact tetraquark states with configurations uduˉdˉud\bar{u}\bar{d}, usuˉsˉus\bar{u}\bar{s}, and sssˉsˉss\bar{s}\bar{s} in the JPC=0+J^{PC}=0^{-+} and 2+2^{-+} channels using the QCD sum rules approach. To effectively describe these tetraquark states, we construct appropriate interpolating tetraquark currents featuring three Lorentz indices while avoiding derivative operators. Through meticulous calculations of correlation functions up to dimension 10 condensates, we extract the mass spectra for both 0+0^{-+} and 2+2^{-+} states by employing the projection operator technique. Our results indicate that the masses of light tetraquarks span 1.52.5 GeV1.5-2.5~\text{GeV} for 0+0^{-+} states and 2.42.7 GeV2.4-2.7~\text{GeV} for 2+2^{-+} states. Notably, our analysis suggests that the X(2370)X(2370) state could be interpreted as a 0+0^{-+} usuˉsˉus\bar{u}\bar{s} or sssˉsˉss\bar{s}\bar{s} tetraquark state, while the X(2600)X(2600) state is likely to be a 2+2^{-+} usuˉsˉus\bar{u}\bar{s} tetraquark. These intriguing findings warrant further detailed investigation in future studies to better understand the nature of these states.

Keywords

Cite

@article{arxiv.2502.16047,
  title  = {Interpreting the $X(2370)$ and $X(2600)$ as light tetraquark states},
  author = {Qi-Nan Wang and Ding-Kun Lian and Wei Chen},
  journal= {arXiv preprint arXiv:2502.16047},
  year   = {2025}
}

Comments

Updated to match the final version accepted by Physical Review D