English

Interaction and Identification of the Doubly Heavy Di-Hadronic Molecules

High Energy Physics - Phenomenology 2018-07-10 v2 Nuclear Theory

Abstract

We study the interesting problem of interaction and identification of the hadronic molecules which seem to be deuteron-like structure. In particular, we propose a binding mechanism in which One Boson Exchange Potential plus Yukawa screen-like potential is applied in their relative s-wave state. We propose the dipole-like interaction between two color neutral states to form a hadronic molecule. For the identification of the hadronic molecules, the Weinberg's compositeness theorem is used to distinguish the molecule from confined (elementary) state. The present formalism predict some di-hadronic molecular states, involving quarks (s, c, b or s\overline{s}, c\overline{c}, b\overline{b}) as a constituents, namely, pnpn, KKK\overline{K}, ρρ\rho \overline{\rho}, KKK^{*}\overline{K^{*}}, DDD\overline{D^{*}}(DD\overline{D}D^{*}), DDD^{*}\overline{D^{*}}, BBB\overline{B^{*}}, BBB^{*}\overline{B^{*}}, D±D10D^{*\pm}\overline{D_{1}^{0}}, D0K± D^{0}\overline{K^{\pm}}, D0K±D^{*0}\overline{K^{\pm}}, with their possible quantum numbers.

Keywords

Cite

@article{arxiv.1706.09323,
  title  = {Interaction and Identification of the Doubly Heavy Di-Hadronic Molecules},
  author = {D. P. Rathaud and Ajay Kumar Rai},
  journal= {arXiv preprint arXiv:1706.09323},
  year   = {2018}
}

Comments

10 pages