Reconciling threshold and subthreshold expansions for pion-nucleon scattering
Abstract
Heavy-baryon chiral perturbation theory (ChPT) at one loop fails in relating the pion-nucleon amplitude in the physical region and for subthreshold kinematics due to loop effects enhanced by large low-energy constants. Studying the chiral convergence of threshold and subthreshold parameters up to fourth order in the small-scale expansion, we address the question to what extent this tension can be mitigated by including the as an explicit degree of freedom and/or using a covariant formulation of baryon ChPT. We find that the inclusion of the indeed reduces the low-energy constants to more natural values and thereby improves consistency between threshold and subthreshold kinematics. In addition, even in the -less theory the resummation of corrections in the covariant scheme improves the results markedly over the heavy-baryon formulation, in line with previous observations in the single-baryon sector of ChPT that so far have evaded a profound theoretical explanation.
Cite
@article{arxiv.1610.08978,
title = {Reconciling threshold and subthreshold expansions for pion-nucleon scattering},
author = {D. Siemens and J. Ruiz de Elvira and E. Epelbaum and M. Hoferichter and H. Krebs and B. Kubis and U. -G. Meißner},
journal= {arXiv preprint arXiv:1610.08978},
year = {2017}
}
Comments
10 pages, 4 tables, Mathematica notebook with the analytic expressions for threshold and subthreshold parameters included as supplementary material; journal version