Strong isospin symmetry breaking in light scalar meson production
Abstract
Isospin symmetry breaking is discussed as a tool for studying the nature and production mechanisms of light scalar mesons. We are concerned with isospin breaking effects with an amplitude (instead of the usual ), where and are the and quark masses, whose magnitude and phase vary with energy in a resonance-like way characteristic of the threshold region. We consider a variety of reactions that can experimentally reveal (or have revealed) the mixing of and resonances that breaks the isotopic invariance due to the mass difference between and mesons. Experimental results on the search for mixing in and decays suggest a broader perspective on the isotopic symmetry breaking effects due to the and mass difference. It has become clear that not only the mixing but also any mechanism producing pairs with a definite isospin in an S wave gives rise to such effects, thus suggesting a new tool for studying the nature and production mechanisms of light scalars. Of particular interest is the case of a large isotopic symmetry breaking in the decay due to the occurrence of anomalous Landau thresholds (logarithmic triangle singularities), i.e., due to the transition (where it is of fundamental importance that the meson has a finite width).
Keywords
Cite
@article{arxiv.1905.11729,
title = {Strong isospin symmetry breaking in light scalar meson production},
author = {N. N. Achasov and G. N. Shestakov},
journal= {arXiv preprint arXiv:1905.11729},
year = {2019}
}
Comments
33 pages, 29 figures. v2: New reference [118] added in the arXiv version