Glueball States in a Constituent Gluon Model
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 and , we find that the 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 , and states are nearly degenerate, and their mass ratio with is largely independent of all parameters and consistent with lattice calculations. We estimate the mass of glueball to be GeV, which is close to the mass of and .
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