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Galactic cosmic ray simulation at the NASA Space Radiation Laboratory

机译:美国宇航局太空辐射实验室的银河宇宙射线模拟

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Most accelerator-based space radiation experiments have been performed with single ion beams at fixed energies. However, the space radiation environment consists of a wide variety of ion species with a continuous range of energies. Due to recent developments in beam switching technology implemented at the NASA Space Radiation Laboratory (NSRL) at Brookhaven National Laboratory (BNL), it is now possible to rapidly switch ion species and energies, allowing for the possibility to more realistically simulate the actual radiation environment found in space. The present paper discusses a variety of issues related to implementation of galactic cosmic ray (GCR) simulation at NSRL, especially for experiments in radiobiology. Advantages and disadvantages of different approaches to developing a GCR simulator are presented. In addition, issues common to both GCR simulation and single beam experiments are compared to issues unique to GCR simulation studies. A set of conclusions is presented as well as a discussion of the technical implementation of GCR simulation.
机译:大多数基于加速器的空间辐射实验都是使用固定能量的单个离子束进行的。但是,空间辐射环境由各种具有连续能量范围的离子组成。由于布鲁克海文国家实验室(BNL)的NASA太空辐射实验室(NSRL)实施的光束转换技术的最新发展,现在可以快速切换离子种类和能量,从而可以更真实地模拟实际的辐射环境在太空中发现。本文讨论了与在NSRL实施银河宇宙射线(GCR)模拟有关的各种问题,特别是对于放射生物学实验。介绍了开发GCR仿真器的不同方法的优缺点。此外,将GCR仿真和单束实验共同的问题与GCR仿真研究独有的问题进行了比较。提出了一系列结论,并讨论了GCR仿真的技术实现。

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