Couplings of light I=0 scalar mesons to simple operators in the complex plane
Abstract
The flavour and glue structure of the light scalar mesons in QCD are probed by studying the couplings of the I=0 mesons and to the operators , and to two photons. The Roy dispersive representation for the amplitude is used to determine the pole positions as well as the residues in the complex plane. On the real axis, is constrained to solve the Roy equation together with elastic unitarity up to the threshold leading to an improved description of the . The problem of using a two-particle threshold as a matching point is discussed. A simple relation is established between the coupling of a scalar meson to an operator and the value of the related pion form-factor computed at the resonance pole. Pion scalar form-factors as well as two-photon partial-wave amplitudes are expressed as coupled-channel Omn\`es dispersive representations. Subtraction constants are constrained by chiral symmetry and experimental data. Comparison of our results for the couplings with earlier determinations of the analogous couplings of the lightest I=1 and scalar mesons are compatible with an assignment of the , , , into a nonet. Concerning the gluonic operator we find a significant coupling to both the and the .
Keywords
Cite
@article{arxiv.1110.6074,
title = {Couplings of light I=0 scalar mesons to simple operators in the complex plane},
author = {B. Moussallam},
journal= {arXiv preprint arXiv:1110.6074},
year = {2015}
}
Comments
31 pages, 5 figures