Triply heavy tetraquark states
arXiv:2109.05243 · doi:10.1103/PhysRevD.105.034026
Abstract
In the framework of an extended chromomagnetic model, we systematically study the mass spectrum of the -wave tetraquarks. Their mass spectra are mainly determined by the color interaction. For the , and tetraquarks, the color interaction favors the color-sextet configuration over the color-triplet one. But for the tetraquarks, the color-triplet configuration is favored. We find no stable states which lie below the thresholds of two pseudoscalar mesons. The lowest axial-vector states with the flavor configuration may be narrow. They lie just above the thresholds of two pseudoscalar mesons, but cannot decay into these channels because of the conservation of the angular momentum and parity.
25 pages, 6 figures. revised version accepted by PRD
References in corpus (17)
- Multiquark Resonances
- Pentaquark and Tetraquark states
- Observation of a narrow pentaquark state, , and of two-peak structure of the
- Exotics: Heavy Pentaquarks and Tetraquarks
- Observation of the doubly charmed baryon
- Masses of tetraquarks with two heavy quarks in the relativistic quark model
- Observation of a near-threshold structure in the recoil-mass spectra in
- Reconciling the X(3872) with the near-threshold enhancement in the D^0\bar{D}^{*0} final state
- Search for structure in the invariant mass spectrum
- Chromomagnetism, flavour symmetry breaking and S-wave tetraquarks
- Precision measurement of the mass
- Triply heavy tetraquark states with the configuration
- HALL POST INEQUALITIES: review and application to molecules and tetraquarks
- Triply heavy tetraquark states
- Triply-heavy tetraquarks in an extended relativized quark model
- Weak Decays of Triply Heavy Tetraquarks
- Effect of relativistic kinematics on the stability of multiquarks