Masses of fully-heavy tetraquark states from a four-quark static potential model
arXiv:2112.11028 · doi:10.1103/PhysRevD.105.014006
Abstract
In this article, we study the ground-state mass of full-heavy tetraquarks and with solving the nonrelativistic four-body systems. The flux-tube configurations, the tetraquark four-body potential butterfly, and the dimeson potential flip-flop of SU(3) lattice quantum chromodynamics have been applied to describe the tetraquark interaction. Our numerical analysis indicates that the disconnected and connected static potentials can predict the mass of tetraquark very close to experimental data.
References in corpus (5)
- Discovery of doubly-charmed Xi_{cc} baryon implies a stable (b b ubar dbar) tetraquark
- The Z(4430) and a New Paradigm for Spin Interactions in Tetraquarks
- A New Picture for the Formation and Decay of the Exotic Mesons
- Chromomagnetism, flavour symmetry breaking and S-wave tetraquarks
- Spectroscopy of Exotic Hadrons Formed from Dynamical Diquarks