Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10695317 | Advances in Space Research | 2005 | 9 Pages |
Abstract
A new version of the HZETRN code capable of simulating HZE ions with either laboratory or space boundary conditions is under development. The computational model consists of combinations of physical perturbation expansions based on the scales of atomic interaction, multiple scattering, and nuclear reactive processes with use of asymptotic/Neumann expansions with non-perturbative corrections. The code contains energy loss with straggling, nuclear attenuation, nuclear fragmentation with energy dispersion and downshifts, and off-axis dispersion with multiple scattering under preparation. The present benchmark is for a broad directed beam for 1Â A GeV iron ion beams with 2Â A MeV width and four targets of polyethylene, polymethyl metachrylate, aluminum, and lead of varying thickness from 5 to 30Â g/cm2. The benchmark quantities will be dose, track averaged LET, dose averaged LET, fraction of iron ion remaining, and fragment energy spectra after 23Â g/cm2 of polymethyl metachrylate.
Keywords
Related Topics
Physical Sciences and Engineering
Earth and Planetary Sciences
Space and Planetary Science
Authors
John W. Wilson, John Tweed, Steve A. Walker, Francis A. Cucinotta, Ram K. Tripathi, Steve Blattnig, Christopher J. Mertens,