Theoretical and Experimental K^+ + Nucleus Total and Reaction Cross Sections from the KDP-RIA Model
Abstract
The 5-dimensional spin-0 form of the Kemmer-Duffin-Petiau (KDP) equation is used to calculate scattering observables [elastic differential cross sections (), total cross sections (), and reaction cross sections (})] and to deduce and from transmission data for Li, C, Si, and Ca at several momenta in the range . Realistic uncertainties are generated for the theoretical predictions. These errors, mainly due to uncertainties associated with the elementary nucleon amplitudes, are large, so that the disagreement that has been noted between experimental and theoretical and is not surprising. The results suggest that the nucleon amplitudes need to be much better determined before unconventional medium effects are invoked to explain the data.
Keywords
Cite
@article{arxiv.nucl-th/9801003,
title = {Theoretical and Experimental K^+ + Nucleus Total and Reaction Cross Sections from the KDP-RIA Model},
author = {L. Kurth Kerr and B. C. Clark and S. Hama and L. Ray and G. W. Hoffmann},
journal= {arXiv preprint arXiv:nucl-th/9801003},
year = {2009}
}
Comments
7 pages text, 5 figures