Optical model potential analysis of $\bar nA$ and $nA$ interactions
Abstract
We use a momentum-dependent optical model potential to analyze the annihilation cross sections of antineutron on C, Al, Fe, Cu, Ag, Sn, and Pb nuclei for projectile momenta 500 MeV/. We obtain good description of annihilation cross sections data of Barbina {\it et al.} [Nucl.~Phys.~A {\bf 612}, ~346~(1997)] and of Astrua {\it et al.} [Nucl.~Phys.~A {\bf 697},~209~(2002)] which exhibit an interesting dependence of the cross sections on the as well as on the target atomic mass number . We also obtain the neutron () non-elastic reaction cross sections for the same targets. Contrasting the reaction cross sections to the annihilation cross sections , we find the is significantly larger than the , that is, the / cross section ratio lies between the values of order 1.8 and 3.8 in the momentum region where comparison is possible. The dependence of the annihilation cross section on the projectile charge is also examined in comparison with antiproton . Here we predict the annihilation cross section on the simplest assumption that both and interactions have the same nuclear part of the optical model potential but differs only on the electrostatic Coulomb interaction. Deviation from such simple model extrapolation in measurements will provide new information on the difference between and potentials.
Keywords
Cite
@article{arxiv.1803.01820,
title = {Optical model potential analysis of $\bar nA$ and $nA$ interactions},
author = {Teck-Ghee Lee and Cheuk-Yin Wong},
journal= {arXiv preprint arXiv:1803.01820},
year = {2018}
}
Comments
15 pages, 9 figures