English

Is $Z_b(10610)$ a Molecular State?

High Energy Physics - Phenomenology 2012-04-23 v3 High Energy Physics - Experiment

Abstract

Whether molecular states indeed exist in nature has been disputed for a long time. Several new resonances have been observed in the recent experiments and they seem to be of exotic structures and some of them have been proposed to be molecular states. The very recent observation of Zb(10610)[(10608.4±2.0)Z_b(10610)[(10608.4\pm 2.0) MeV] and Zb(10650)[(10653.2±1.5)Z_b(10650)[(10653.2\pm 1.5) MeV] encourages the interpretation of multi-quark states. In the Beter-Salpeter (BS) approach, we study the possibility if two heavy mesons can form a molecular state by exchanging light mesons. Our results indicate that two heavy mesons can form an isospin singlet (I=0) bound state but cannot form an isospin triplet (I=1) when the contribution of σ\sigma- exchange is reasonably small, i.e. as the coupling of σ\sigma with mesons gσg_{\sigma} takes the value given in previous literatures. Thus we conclude that the newly observed Zb(10610)Z_b(10610) should not be a molecular state, but a tetraquark state instead, at most, the fraction of the molecular state in the physical resonance Zb(10610)Z_b(10610) is tiny.

Keywords

Cite

@article{arxiv.1202.2178,
  title  = {Is $Z_b(10610)$ a Molecular State?},
  author = {Hong-Wei Ke and Xue-Qian Li and Yan-Liang Shi and Guo-Li Wang and Xu-Hao Yuan},
  journal= {arXiv preprint arXiv:1202.2178},
  year   = {2012}
}

Comments

15 pages, 2 figures, an important reference added; Accepted by JHEP

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