Nuclear Cross Sections for Space Radiation ApplicationsThe eikonal, partial wave (PW) Lippmann-Schwinger, and three-dimensional Lippmann-Schwinger (LS3D) methods are compared for nuclear reactions that are relevant for space radiation applications. Numerical convergence of the eikonal method is readily achieved when exact formulas of the optical potential are used for light nuclei (A = 16) and the momentum-space optical potential is used for heavier nuclei. The PW solution method is known to be numerically unstable for systems that require a large number of partial waves, and, as a result, the LS3D method is employed. The effect of relativistic kinematics is studied with the PW and LS3D methods and is compared to eikonal results. It is recommended that the LS3D method be used for high energy nucleon-nucleus reactions and nucleus-nucleus reactions at all energies because of its rapid numerical convergence and stability for both non-relativistic and relativistic kinematics.
Document ID
20160006532
Acquisition Source
Langley Research Center
Document Type
Presentation
Authors
Werneth, C. M. (NASA Langley Research Center Hampton, VA, United States)
Maung, K. M. (University of Southern Mississippi Hattiesburg, MS, United States)
Ford, W. P. (Tennessee Univ. Knoxville, TN, United States)
Norbury, J. W. (NASA Langley Research Center Hampton, VA, United States)
Vera, M. D. (University of Southern Mississippi Hattiesburg, MS, United States)
Date Acquired
May 24, 2016
Publication Date
October 31, 2015
Subject Category
Nuclear PhysicsSpace Radiation
Report/Patent Number
NF1676L-21930Report Number: NF1676L-21930
Meeting Information
Meeting: American Physical Society Meeting Division of Nuclear Physics