English

Glueball States in a Constituent Gluon Model

High Energy Physics - Phenomenology 2009-11-07 v3

Abstract

In a model with dynamical gluon mass, we investigate the bound states of two and three gluons via a Schr\"odinger equation. The short distance potential is approximated by one-gluon-exchange while the long distance part is assumed to be of a breakable string. We estimate the masses and in particular the {\it sizes} of low-lying bound states with no orbital angular momentum. By considering quantum-mechanical smearing of the gluon fields and normalizing to lattice results on M0++M_{0^{++}} and M2++M_{2^{++}}, we find that the 0++0^{++} glueball is rather small in size compared with the others. The fitted gluon mass is of order 600 to 700 MeV, which is reasonable. The 3-gluon glueballs 0+0^{-+}, 11^{--} and 33^{--} states are nearly degenerate, and their mass ratio with 2++2^{++} is largely independent of all parameters and consistent with lattice calculations. We estimate the mass of 11^{--} glueball to be 3.13.73.1-3.7 GeV, which is close to the mass of J/ψJ/\psi and ψ\psi^\prime.

Keywords

Cite

@article{arxiv.hep-ph/0101146,
  title  = {Glueball States in a Constituent Gluon Model},
  author = {Wei-Shu Hou and Ching-Shan Luo and Gwo-Guang Wong},
  journal= {arXiv preprint arXiv:hep-ph/0101146},
  year   = {2009}
}

Comments

Revtex, 7 pages with 7 eps figures