太阳质子剂量估算的模拟:用于空间探索的PMMA-Bi2O3屏蔽模型

L. Sajo-Bohus, J. A. López, M. Castro-colin
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引用次数: 1

摘要

长期暴露于银河宇宙辐射(GCR)的不利影响对未来的太空探索计划构成了不可忽视的障碍;高let -富颗粒环境对人体健康有不利影响。伴随GCR的还有太阳粒子辐射。长期的空间探索将依赖于充分和高效的屏蔽材料,以减少生物系统和电子设备对GCR和太阳粒子的暴露。屏蔽层必须有效地衰减重GCR离子,将它们分解成破坏性较小的碎片和二次辐射:具有生物破坏性的高能中子和高电荷和高能的HZE-粒子。解决这个问题的一种方法是开发屏蔽化合物。屏蔽材料应针对给定任务的不同方面的条件,例如时间持续时间和行进路径。本文采用蒙特卡罗方法(GEANT4)来估计基于最近开发的bi2o3基化合物的屏蔽材料的效果(Cao等,2020)。在本研究中,使用GEANT4代码对太阳质子的衰减进行估计。目的是提供一些关于具有内在剂量减少能力的新型复合屏蔽的影响的见解。
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Simulation of Dose Estimations from Solar Protons: A PMMA-Bi2O3 Shielding Model for Space Exploration
Adverse effects of long-term exposure to galactic cosmic radiation (GCR) pose a non negligible obstacle for future space exploration programs; the high-LET-particle-rich environment has an adverse effect on human health. Concomitant to GCR we have as well solar particle radiation. Long term space exploration will rely on adequate and highly efficient shielding materials that will reduce exposure of both biosystems and electronic equipment to GCR and solar particles. The shield must attenuate efficiently heavy GCR ions, by breaking them up into less-damaging fragments and secondary radiation: biologically damaging energetic neutrons and highly charged and energetic HZE- particles. An approach to this problem is the development of shielding compounds. Shielding materials should address the conditions of different aspects of a given mission, e.g. time duration and travel path. The Monte Carlo method (GEANT4) is here employed to estimate the effects of a shielding material based on the recently developed Bi2O3-based compound (Cao et al., 2020). In the present study GEANT4 code is used to make estimations of attenuation of solar protons. The objective is to provide some insight about the effect of the new composite shield that has an intrinsic capability for dose reduction.
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