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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Effects of multilayer and multimaterial structures on space proton radiation protection
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Effects of multilayer and multimaterial structures on space proton radiation protection

机译:多层和多材料结构对空间质子辐射防护的影响

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An investigation of multilayer (and multimaterial) structures for space proton radiation protection is presented. In this research, both the role of the material itself on the shielding efficiency and the effect of the structure of the shield were considered. By using simulations with the software package Geant4, the shielding efficiencies for high energy protons were calculated for three different materials (aluminum, copper and tantalum) and for two multilayer structures. It was found that the optimum solar proton protection is obtained with a multilayer structure. In order to prove the validity of simulation results, 9 MeV proton irradiation experiments were performed. The good agreement between simulation results and experimental data confirms that the Geant4 code can be used to accurately calculate high-energy proton radiation protection.
机译:提出了用于空间质子辐射防护的多层(和多种材料)结构的研究。在这项研究中,既考虑了材料本身对屏蔽效率的作用,也考虑了屏蔽结构的影响。通过使用Geant4软件包进行仿真,可以计算出三种不同材料(铝,铜和钽)和两种多层结构的高能质子的屏蔽效率。发现利用多层结构可获得最佳的太阳能质子保护。为了证明模拟结果的有效性,进行了9次MeV质子辐照实验。仿真结果与实验数据之间的良好一致性证明,Geant4代码可用于准确计算高能质子辐射防护。

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