The Relativistic Cornell-type Mechanism of Exotic Scalar Resonances
Abstract
The formalism of the coupled and the , ) scalar channels is formulated, taking into account the ground and radial excited poles. The basic role is shown to be played by the transition coefficients , which are calculated using the quark-chiral Lagrangian without free parameters. The resulting method, called the pole projection mechanism (PPM), ensures: 1) one resonance for each channel from the basic pole, e.g. the resonance in the channel; 2) a possibility to have two resonances, coupled to the same state, when the channel coupling is taken into account in the meson-meson channels, which yields and from the same pole around 1 GeV; 3) the strong pole shift down for special ( channels due to large transition coefficients , computed in this formalism without free parameters. The parameters of calculated complex poles are in reasonable agreement with the experimental data of the resonances , , , , , , and .
Keywords
Cite
@article{arxiv.2001.07113,
title = {The Relativistic Cornell-type Mechanism of Exotic Scalar Resonances},
author = {A. M. Badalian and M. S. Lukashov and Yu. A. Simonov},
journal= {arXiv preprint arXiv:2001.07113},
year = {2020}
}
Comments
v2: 22 pages, 5 figures; new explanations are added, several important insertions are made, the list of references is enlarged