The lightest scalar glueball
Abstract
Recently performed investigations of meson spectra allow us to determine the resonance structure for the waves , , , = in the mass region up to 1900 MeV, thus establishing the meson multiplets and . Experimental data demonstrate that there are five scalar/isoscalar states in this mass region. Four of them are states, that is, members of the and nonets, while the fifth state is an extra one not accomodated by systematics; it has the properties of the lightest scalar glueball. Analysis of the -wave performed within the framework of the dispersion relation technique allows us to reconstruct the mixing of a pure gluonium with neighbouring scalar states belonging to and nonets: three scalar mesons share the gluonium state between each other -- those are two comparatively narrow resonances and and a broad resonance . The broad state is a descendant of the gluonium, keeping about 40-50% of its component.
Cite
@article{arxiv.hep-ph/9712504,
title = {The lightest scalar glueball},
author = {V. V. Anisovich},
journal= {arXiv preprint arXiv:hep-ph/9712504},
year = {2009}
}
Comments
48 pages, LaTeX, 25 PostScript figures, epsfig.sty. Submitted to Russian Journal Uspekhi Fiz. Nauk (Phys-Uspekhi)