English

Coulomb gauge model for hidden charm tetraquarks

High Energy Physics - Phenomenology 2013-07-12 v2

Abstract

The spectrum of tetraquark states with hidden charm is studied within an effective QCD Coulomb gauge Hamiltonian approach. Of the four independent color schemes, two are investigated, the (qcˉ)1(cqˉ)1(q\bar{c})_1(c\bar{q})_1 singlet-singlet (molecule) and the (qc)3(qˉcˉ)3(qc)_3(\bar{q}\bar{c})_3 triplet-triplet (diquark), for selected JPCJ^{PC} states using a variational method. The predicted masses of triplet-triplet tetraquarks are roughly a GeV heavier than the singlet-singlet states. There is also an interesting flavor dependence with (qqˉ)1(ccˉ1)(q\bar{q})_1(c\bar{c}_1) states about half a GeV lighter than (qcˉ)1(qˉc)1(q\bar{c})_1(\bar{q}c)_1. The lightest 1++1^{++} and 11^{--} predictions are in agreement with the observed X(3872) and Y(4008) masses, respectively, suggesting they both have a ωJ/ψ\omega J/ \psi rather than DDˉD^*\bar D^* molecular type structure. This is consistent with observed XX, YY decays to π±J/ψ\pi^\pm J/ \psi and not DDˉD^*\bar D^* .

Keywords

Cite

@article{arxiv.1302.5737,
  title  = {Coulomb gauge model for hidden charm tetraquarks},
  author = {W. Xie and L. Q. Mo and P. Wang and Stephen R. Cotanch},
  journal= {arXiv preprint arXiv:1302.5737},
  year   = {2013}
}

Comments

13 pages, 3 figures