arXiv:nucl-th/0012075·v3·Nuclear Theory
Non-localities and Fermi motion corrections in atoms
C. Garcia-Recio (U. Granada, Spain)🇪🇸 · J. Nieves (U. Granada, Spain)🇪🇸 · E. Oset (U. Valencia, Spain)🇪🇸 · A. Ramos (U. Barcelona, Spain)🇪🇸
Abstract
We evaluate the p-wave amplitudes from the chiral Lagrangians and from there construct the p-wave part of the nucleus optical potential plus a small s-wave part induced from the elementary p-wave amplitude and the nuclear Fermi motion. Simultaneously, the momentum and energy dependence of the s-wave optical potential, previously developed, are taken into account and shown to generate a small p-wave correction to the optical potential. All the corrections considered are small compared to the leading s-wave potential, and lead to changes in the shifts and widths which are smaller than the experimental errors. A thorough study of the threshold region and low densities is conducted, revealing mathematical problems for which a physical solution is given.
Comments: revised version, 28 pages, Latex, 8 postscript figures. Submitted to Nucl. Phys. A