Nucleon-Nucleon and Pion-Nucleon Potentials from Phase Shifts using Quantum Inversion

Sander, M.; Beck, C.; Schroeder, B. C.; Pyo, H. -B.; Becker, H.; Burrows, J.; von Geramb, H. V.; Wu, Y.; Ishikawa, S.
Bibliographical reference

eprint arXiv:nucl-th/9409022

Advertised on:
9
1994
Number of authors
9
IAC number of authors
0
Citations
0
Refereed citations
0
Description
NN and Pi-N partial wave radial potentials have been generated using the latest SM94-VPI(NN) and FA93-VPI(Pi-N) phase shifts. The potentials are used to determine the deuteron properties and to compute the 3H and 3He binding energies. The e_1 mixing angles of SM94-VPI and NY93-Nijmegen differ significantly and inversion potentials yield a P_d of 6.37% and 5.78%, respectively. Underbinding of 3H and 3He is enhanced by SM94, which signals more nonlocality and/or three-body potential effects than predicted from Nijmegen phase shifts and boson exchange models. The local pion-nucleon S_31, P_31 and P_33 channel potentials have been generated for guidance and to obtain a quantitative impression in r-space of what the Pi-N FA93-VPI phase shifts imply.