arXiv:2609.04628·v1·High Energy Physics — Phenomenology
QCD sum rule analysis of hidden strange tetraquark masses and radial excitations
Zhuo-Ran Huang🇨🇳 · Wei Chen🇨🇳 · Jason Ho🇺🇸 · Lei-Hua Liu🇨🇳
Abstract
We revisit the light tetraquark states with quantum numbers using QCD sum rules, focusing on a complete set of derivative-free diquark-antidiquark interpolating currents. By calculating the operator product expansion up to dimension-eight condensates, we extract the ground-state mass of the hidden-strange tetraquark from both Laplace sum rules (LSR) and finite-energy sum rules (FESR). Our combined analysis yields ~GeV, which agrees well with the mass of the resonance and supports its tetraquark interpretation. Furthermore, we perform Gaussian sum rule (GSR) analyses to probe radial excitations, adopting a two-resonance narrow-width model. The GSR fit reveals a heavier state with mass ~GeV and a relative coupling for the lighter state, indicating that the is a promising candidate for a compact tetraquark. We also discuss the dominant decay modes of these tetraquark candidates, emphasizing hidden-strange channels such as and , which can be tested in future experiments.
Comments: 17 pages, 2 figures