Mass spectra of dibaryons in the and channels
arXiv:2103.09739 · doi:10.1103/PhysRevD.103.094011
Abstract
We study the mass spectra of the dibaryons in the and channels with and respectively, by using the method of QCD sum rules. We construct two dibaryon interpolating currents in the molecular picture and calculate their correlation functions and spectral densities up to dimension-16 condensates. Our results indicate that there may exist an dibaryon bound state in the channel with a binding energy of about . The masses of the dibaryons with are predicted to be higher than the and thresholds, and thus can decay into these final states directly in S-wave. The dibaryon bound state can decay into the octet-octet final states and in D-wave via the quark rearrangement mechanism. The existence of these dibaryons may be identified in the relativistic heavy-ion collision experiments in the future.
9 pages, 5 figures. Published in Physical Review D
References in corpus (13)
- Multiquark Resonances
- Pentaquark and Tetraquark states
- Exotics: Heavy Pentaquarks and Tetraquarks
- ABC Effect in Basic Double-Pionic Fusion --- Observation of a new resonance?
- Double-Pionic Fusion of Nuclear Systems and the ABCEffect -- Aproaching a Puzzle by Exclusive and Kinematically Complete Measurements
- Multi-quark hadrons from Heavy Ion Collisions
- On the History of Dibaryons and their Final Observation
- Spin-2 Dibaryon from Lattice QCD
- QCD sum rule Study of the
- The I^G J^{PC}=1^- 1^{-+} Tetraquark States
- Mass spectra for , , , tetraquark states with and
- Open-flavor charmed/bottom and tetraquark states
- Towards the decay properties of deuteron-like state