$0^{+}$ tetraquark states from improved QCD sum rules: delving into $X(5568)$
Abstract
In order to investigate the possibility of the recently observed being a tetraquark state, we make an improvement to the study of the related various configuration states in the framework of the QCD sum rules. Particularly, to ensure the quality of the analysis, condensates up to dimension are included to inspect the convergence of operator product expansion (OPE) and improve the final results of the studied states. We note that some condensate contributions could play an important role on the OPE side. By releasing the rigid OPE convergence criterion, we arrive at the numerical value for the scalar-scalar diquark-antidiquark state, which agrees with the experimental data for the and could support its interpretation in terms of a tetraquark state with the scalar-scalar configuration. The corresponding result for the axial-axial current is calculated to be , which is still consistent with the mass of in view of the uncertainty. The feasibility of being a tetraquark state with the axial-axial configuration therefore cannot be definitely excluded. For the pseudoscalar-pseudoscalar and the vector-vector cases, their unsatisfactory OPE convergence make it difficult to find reasonable work windows to extract the hadronic information.
Keywords
Cite
@article{arxiv.1705.03741,
title = {$0^{+}$ tetraquark states from improved QCD sum rules: delving into $X(5568)$},
author = {Jian-Rong Zhang and Jing-Lan Zou and Jin-Yun Wu},
journal= {arXiv preprint arXiv:1705.03741},
year = {2018}
}
Comments
14 pages, 8 figures