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Spectrum of the molecular hexaquarks

High Energy Physics - Phenomenology 2024-07-30 v1 High Energy Physics - Experiment

Abstract

We investigate the mass spectra of molecular-type hexaquark states in the dibaryon systems. These systems are composed of the charmed baryons [Σc()[\Sigma_c^{(\ast)}, Ξc(,)]\Xi_c^{(\prime,\ast)}], doubly charmed baryons [Ξcc()][\Xi_{cc}^{(\ast)}], and hyperons [Σ()[\Sigma^{(\ast)}, Ξ()]\Xi^{(\ast)}]. We consider all possible combinations of particle-particle and particle-antiparticle pairs, including the S-wave spin multiplets in each combination. We establish the underlying connections among the molecular tetraquarks, pentaquarks, and hexaquarks with the effective quark-level interactions. We find that the existence of molecular states in DDDD^\ast, DDˉD\bar{D}^\ast, and ΣcDˉ()\Sigma_c\bar{D}^{(\ast)} systems leads to the emergence of a large number of deuteron-like hexaquarks in the heavy flavor sectors. Currently, there have been several experimental candidates for molecular tetraquarks and pentaquarks. The experimental search for near-threshold hexaquarks will further advance the establishment of the underlying dynamical picture of hadronic molecules and deepen our understanding of the role of spin-flavor symmetry in near-threshold residual strong interactions.

Keywords

Cite

@article{arxiv.2406.06993,
  title  = {Spectrum of the molecular hexaquarks},
  author = {Bo Wang and Kan Chen and Lu Meng and Shi-Lin Zhu},
  journal= {arXiv preprint arXiv:2406.06993},
  year   = {2024}
}

Comments

17 pages, 13 tables