English

Single-energy partial wave analysis for pion photoproduction with fixed-t analyticity

Nuclear Theory 2021-09-15 v1

Abstract

Experimental data for pion photoproduction including differential cross sections and various polarization observables from four reaction channels, γpπ0p\gamma p \to \pi^0 p, γpπ+n\gamma p \to \pi^+n, γnπp\gamma n \to \pi^- p and γnπ0n\gamma n \to \pi^0 n from threshold up to W=2.2W=2.2 GeV have been used in order to perform a single-energy partial wave analysis with minimal model dependence by imposing constraints from unitarity and fixed-tt analyticity in an iterative procedure. Reaction models were only used as starting point in the very first iteration. We demonstrate that with this procedure partial wave amplitudes can be obtained which show only a minimal dependence on the initial model assumptions. The analysis has been obtained in full isospin, and the Watson theorem is enforced for energies below W=1.3W=1.3 GeV but is even fulfilled up to W1.6W\approx 1.6 GeV in many partial waves. Electromagnetic multipoles E±E_{\ell\pm} and M±M_{\ell\pm} are presented and discussed for S,P,DS,P,D and FF-waves.

Keywords

Cite

@article{arxiv.2107.06513,
  title  = {Single-energy partial wave analysis for pion photoproduction with fixed-t analyticity},
  author = {H. Osmanović and M. Hadžimehmedović and R. Omerović and J. Stahov and V. Kashevarov and M. Ostrick and L. Tiator and A. Švarc},
  journal= {arXiv preprint arXiv:2107.06513},
  year   = {2021}
}

Comments

36 pages, 31 figures. arXiv admin note: substantial text overlap with arXiv:1908.05167

R2 v1 2026-06-24T04:10:50.519Z