arXiv:1511.08542·v1·High Energy Physics — Phenomenology
Heavy Tetraquarks in the Diquark-Antidiquark Picture
M. R. Hadizadeh🇺🇸 · A. Khaledi-Nasab🇺🇸
Abstract
The homogeneous Lippmann-Schwinger integral equation is solved in momentum space to calculate the masses of heavy tetraquarks with hidden charm and bottom. The tetraquark bound states are studied in the diquark-antidiquark picture as a two-body problem. A regularized form of the diquark-antidiquark potential is used to overcome the singularity of the confining potential at large distances or small momenta. Our numerical results indicate that the relativistic effect leads to a small reduction in the mass of heavy tetraquarks, which is less than for charm and less than for bottom tetraquarks. The calculated masses of heavy tetraquarks for , , , and states are in good agreement with other theoretical calculations and experimental data. Our numerical analysis predict the masses of heavy tetraquarks for , and states for the first time, and we are not aware of any other theoretical results or experimental data for these states.