Large-$N_c$ naturalness in coupled-channel meson-meson scattering
Abstract
The analysis of hadronic interactions with effective field theory techniques is complicated by the appearance of a large number of low-energy constants, which are usually fitted to data. On the other hand, the large- limit imposes natural short-distance constraints on these low-energy constants, providing a parameter reduction. A Bayesian interpretation of the expected accuracy allows for an easy and efficient implementation of these constraints, using an augmented . We apply this approach to the analysis of meson-meson scattering, in conjunction with chiral perturbation theory to one loop and coupled-channel unitarity, and show that it helps to largely reduce the many existing ambiguities and simultaneously provide an acceptable description of the available phase shifts.
Keywords
Cite
@article{arxiv.1407.3750,
title = {Large-$N_c$ naturalness in coupled-channel meson-meson scattering},
author = {T. Ledwig and J. Nieves and A. Pich and E. Ruiz Arriola and J. Ruiz de Elvira},
journal= {arXiv preprint arXiv:1407.3750},
year = {2015}
}
Comments
17 pages, 15 figures