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Pion-heavy ion scattering total and inelastic cross sections for space radiation applications

机译:用于空间辐射应用的重离子散射总截面和非弹性截面

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Secondary pions are produced by cosmic ray proton and heavy ion induced collisions with spacecraft shielding materials and tissue. In this paper we describe methods for compiling a data-base of energy dependent pion-heavy ion inelastic sections for interactions of pions with common shielding and tissue atoms over a wide energy range (20 MeV to 100 GeV). Calculations are made in a 2nd order optical model solution to coupled-channel solutions to the Eikonal form of the nucleus nucleus scattering amplitude, which are compared to 1st order optical model solutions. The 2nd order model takes into account two-body correlations in the target nucleus ground-state, which are ignored in the 1st order optical model. In addition we consider several empirical corrections related to nuclear medium effects and nuclear binding, which are ignored in the impulse approximation used in the optical model. We report on extensive comparisons to experimental data for energy dependent total and absorption (inelastic) cross sections. General agreement between model and experiments within +/- 20% are found.
机译:二次离子是由宇宙射线质子和重离子引起的与航天器屏蔽材料和组织的碰撞产生的。在本文中,我们描述了用于编译能量依赖的重离子非离子截面数据库的方法,这些离子可在宽能量范围(20 MeV至100 GeV)中与常见的屏蔽层和组织原子相互作用。在2阶光学模型解中,针对核原子散射振幅的Eikonal形式的耦合通道解进行计算,并将其与1阶光学模型解进行比较。二阶模型考虑了目标原子核基态中的两体相关性,而在一阶光学模型中则忽略了它们。此外,我们考虑了一些与核介质效应和核键合有关的经验校正,这些校正在光学模型中使用的脉冲近似中被忽略了。我们报告了与能源相关的总截面和吸收(非弹性)截面的实验数据的广泛比较。发现模型与实验之间的一般一致性在+/- 20%之内。

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