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Recent Progress in the Development of a Multi-Layer Green's Function Code for Ion Beam Transport

机译:多层离子束传输格林函数代码开发的最新进展

摘要

To meet the challenge of future deep space programs, an accurate and efficient engineering code for analyzing the shielding requirements against high-energy galactic heavy radiation is needed. To address this need, a new Green's function code capable of simulating high charge and energy ions with either laboratory or space boundary conditions is currently 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 the Neumann-asymptotic expansions with non-perturbative corrections. The code contains energy loss due to straggling, nuclear attenuation, nuclear fragmentation with energy dispersion and downshifts. Previous reports show that the new code accurately models the transport of ion beams through a single slab of material. Current research efforts are focused on enabling the code to handle multiple layers of material and the present paper reports on progress made towards that end.
机译:为了应对未来的深空计划的挑战,需要一种准确高效的工程规范来分析针对高能银河重辐射的屏蔽要求。为了满足这一需求,目前正在开发一种新的格林函数代码,该函数代码能够在实验室或空间边界条件下模拟高电荷和高能离子。该计算模型由基于原子相互作用,多重散射和核反应过程的物理扰动扩展的组合组成,并使用具有非扰动校正的诺伊曼渐近扩展。该代码包含因散乱,核衰减,具有能量分散和降档的核碎片而造成的能量损失。先前的报告显示,新代码可以准确地模拟离子束在单个材料板上的传输。当前的研究工作集中在使代码能够处理多层材料上,本论文报告了为此目的所取得的进展。

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