English

Heavy Holographic Exotics: Tetraquarks as Efimov States

High Energy Physics - Phenomenology 2020-01-01 v2 High Energy Physics - Lattice High Energy Physics - Theory Nuclear Theory

Abstract

We provide a holographic description of non-strange multiquark exotics as compact topological molecules by binding heavy-light mesons to a tunneling configuration in D8-D8ˉ\bar 8 that is homotopic to the vacuum state with fixed Chern-Simons number. In the tunneling process, the heavy-light mesons transmute to fermions. Their binding is generic and arises from a trade-off between the dipole attraction induced by the Chern-Simons term and the U(1) fermionic repulsion. In the heavy quark limit, the open-flavor tetraquark exotics QQqˉqˉQQ\bar q\bar q and QˉQˉqq\bar Q\bar Q qq, emerge as bound Efimov states in a degenerate multiplet IJπ=(00+,01+)IJ^\pi=(00^+ , 01^+) with opposite intrinsic Chern-Simons numbers ±12\pm \frac 12. The hidden-flavor tetraquark exotics such as QQˉqqˉQ\bar Q q\bar q, QQQˉqˉQQ\bar Q\bar q and QQQˉQˉQQ\bar Q\bar Q as compact topological molecules are unbound. Other exotics are also discussed.

Keywords

Cite

@article{arxiv.1904.05189,
  title  = {Heavy Holographic Exotics: Tetraquarks as Efimov States},
  author = {Yizhuang Liu and Maciej A. Nowak and Ismail Zahed},
  journal= {arXiv preprint arXiv:1904.05189},
  year   = {2020}
}

Comments

16 pages, 13 figures