English

Theoretical and Experimental K^+ + Nucleus Total and Reaction Cross Sections from the KDP-RIA Model

Nuclear Theory 2009-10-31 v1

Abstract

The 5-dimensional spin-0 form of the Kemmer-Duffin-Petiau (KDP) equation is used to calculate scattering observables [elastic differential cross sections (dσ/dΩd\sigma/d\Omega), total cross sections (σTot\sigma_{Tot}), and reaction cross sections (σReac\sigma_{Reac}})] and to deduce σTot\sigma_{Tot} and σReac\sigma_{Reac} from transmission data for K++K^+ + 6^{6}Li, 12^{12}C, 28^{28}Si, and 40^{40}Ca at several momenta in the range 488714MeV/c488 - 714 MeV/c. Realistic uncertainties are generated for the theoretical predictions. These errors, mainly due to uncertainties associated with the elementary K++K^+ + nucleon amplitudes, are large, so that the disagreement that has been noted between experimental and theoretical σTot\sigma_{Tot} and σReac\sigma_{Reac} is not surprising. The results suggest that the K++K^+ + 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