arXiv:2507.13728·v1·High Energy Physics — Phenomenology
Triply heavy tetraquarks and in a constituent quark model
Gang Yang🇨🇳 · Jialun Ping🇨🇳 · Jorge Segovia🇪🇸
Abstract
A systematic investigation of -wave triply heavy tetraquark systems with quark content and , spin-parity quantum numbers , , and isospin , is carried out within the constituent quark model framework. The four-body bound and resonance states are determined by solving the Schrödinger equation employing the high-precision and efficient Gaussian Expansion Method (GEM) in conjunction with the powerful Complex Scaling Method (CSM). Besides, a comprehensive coupled-channel analysis of the -wave tetraquark systems is performed, taking into account meson-meson, diquark-antidiquark and K-type configurations, as well as all allowed color structures. Several narrow resonant states are identified in each channel. In particular, resonances for the system are found in the mass range of GeV, while those for the system lie between GeV. Most of the predicted resonances are compact tetraquark states with sizes smaller than fm, although four states exhibit more extended structures with sizes around fm, suggesting a more loosely bound nature. Magnetic moments and dominant wave function components of these exotic states are also analyzed. The results indicate that K-type configurations play a major role in the structure of the observed resonances. Finally, possible strong decay channels (golden modes) for these states are theoretically proposed.
Comments: 24 pages, 13 figures and 28 tables