Gluonic Hidden-charm Tetraquark States
arXiv:2407.18672 · doi:10.1140/epja/s10050-024-01475-4
Abstract
In this paper, a new type of hybrid state, which consists of two valence quarks and two valence antiquarks together with a valence gluon, the gluonic tetraquark states, are investigated. Twenty-four currents of the the gluonic hidden-charm tetraquark states in configuration are constructed, and their mass spectrum are evaluated in the framework of QCD sum rules with quantum numbers of , , , and . The nonperturbative contributions up to dimension 8 are taken into account. The results indicate that there may be exist 14 gluonic hidden-charm tetraquark states, and their corresponding hidden-bottom partners are also evaluated. The possible production and decay modes of the gluonic tetraquark states are analyzed, which are hopefully measurable in BESIII, BELLEII, PANDA, Super-B, and LHCb experiments.
38 pages, 16 figures, 4 tables, accepted by EPJA
References in corpus (15)
- Observation of structure in the -pair mass spectrum
- The Exotic XYZ Charmonium-like Mesons
- Doubly Heavy Tetraquarks in QCD Sum Rules
- Scalar Fully-heavy Tetraquark States in QCD Sum Rules
- Gluonic Tetracharm Configuration of
- About the exotic structure of
- Finding the Glueball
- Possible structure of the newly found exotic state
- Hidden-bottom and -charm hexaquark states in QCD sum rules
- Fully polarized nonlinear Breit-Wheeler pair production in pulsed plane waves
- Study of dibaryon and baryonium states via QCD sum rules
- Where are the hidden-charm hexaquarks?
- Gluonic nature of the newly observed state
- Mass predictions of triply heavy hybrid baryons via QCD sum rules
- Determination of the up/down-quark mass within QCD sum rules in the scalar channel