arXiv:hep-ph/0306060·v1·High Energy Physics — Phenomenology
Radiative Scalar Meson Decays in the Light-Front Quark Model
Martin A. DeWitt (NCSU)🇺🇸 · Ho-Meoyng Choi (KNU)🇰🇷 · Chueng-Ryong Ji (NCSU)🇺🇸
Abstract
We construct a relativistic wavefunction for scalar mesons within the framework of light-front quark model(LFQM). This scalar wavefunction is used to perform relativistic calculations of absolute widths for the radiative decay processes, and which incorporate the effects of glueball- mixing. The mixed physical states are assumed to be ,and for which the flavor-glue content is taken from the mixing calculations of other works. Since experimental data for these processes are poor, our results are compared with those of a recent non-relativistic model calculation. We find that while the relativistic corrections introduced by the LFQM reduce the magnitudes of the decay widths by 50-70%, the relative strengths between different decay processes are fairly well preserved. We also calculate decay widths for the processes and involving the light scalars and to test the simple model of these mesons. Our results of model for these processes are not quite consistent with well-established data, further supporting the idea that and are not conventional states.
Comments: 10 pages, 4 figures