Ghost poles and chiral symmetry in $\pi N$ scattering
Abstract
We solve the Schwinger-Dyson equation for the nucleon propagator in the vacuum using , , and mesons. For bare interaction vertices (Hartree-Fock approximation) we obtain a pair of complex-conjugated poles (ghost poles) and for vertices dressed by phenomenological form-factors these ghosts disappeared. We use these two different approaches to evaluate the scattering lengths and the phase shifts for the scattering at threshold. Our results show that only when the form factors are present is possible to obtain a good agreement with the low-energy observables.
Cite
@article{arxiv.hep-ph/9608455,
title = {Ghost poles and chiral symmetry in $\pi N$ scattering},
author = {C. A. da Rocha and G. Krein and L. Wilets},
journal= {arXiv preprint arXiv:hep-ph/9608455},
year = {2008}
}
Comments
6 pages, 4 embedded figures, Latex 2.09, Revtex.sty, epsf.sty. Contribution presented at the 14th International Conference on Particles and Nuclei (PANIC 96), Williamsburg, VA, 22-28 May 1996