English

Doubly Heavy Tetraquark Resonant States

High Energy Physics - Phenomenology 2021-12-01 v1 Nuclear Theory

Abstract

Spectrum of the doubly heavy tetraquarks, bbqˉqˉbb\bar q\bar q, is studied in a constituent quark model. Four-body problem is solved in a variational method where the real scaling technique is used to identify resonant states above the fall-apart decay thresholds. In addition to the two bound states that were reported in the previous study we have found several narrow resonant states above the BBBB^* and BBB^*B^* thresholds. Their structures are studied and are interpreted by the quark dynamics. A narrow resonance with spin-parity JP=1+J^P=1^+ is found to be a mixed state of a compact tetraquark and a BBB^*B^* scattering state. This is driven by a strong color Coulombic attraction between the bbbb quarks. Negative-parity excited resonances with JP=0J^P=0^-, 11^- and 22^- form a triplet under the heavy-quark spin symmetry. It turns out that they share a similar structure to the λ\lambda-mode of a singly heavy baryon as a result of the strongly attractive correlation for the doubly heavy diquark.

Keywords

Cite

@article{arxiv.2106.11868,
  title  = {Doubly Heavy Tetraquark Resonant States},
  author = {Qi Meng and Masayasu Harada and Emiko Hiyama and Atsushi Hosaka and Makoto Oka},
  journal= {arXiv preprint arXiv:2106.11868},
  year   = {2021}
}