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不同能量下核截面对银河系宇宙射线辐射危害的影响。

Effects of nuclear cross sections at different energies on the radiation hazard from galactic cosmic rays.

作者信息

Lin Z W, Adams J H

机构信息

National Space Science and Technology Center, Hunstville, Alabama 35805, USA.

出版信息

Radiat Res. 2007 Mar;167(3):330-7. doi: 10.1667/rr0704.1.

Abstract

The radiation hazard for astronauts from galactic cosmic rays (GCR) is a major obstacle to long-duration human space exploration. Space radiation transport codes have been developed to calculate the radiation environment on missions to the Moon, Mars, and beyond. We have studied how uncertainties in fragmentation cross sections at different energies affect the accuracy of predictions from such radiation transport calculations. We find that, in deep space, cross sections at energies between 0.3 and 0.85 GeV/nucleon have the largest effect in solar maximum GCR environments. At the International Space Station, cross sections at higher energies have the largest effect due to the geomagnetic cutoff.

摘要

来自银河宇宙射线(GCR)对宇航员的辐射危害是长期载人太空探索的主要障碍。已经开发了空间辐射传输代码来计算前往月球、火星及其他地方的任务中的辐射环境。我们研究了不同能量下碎裂截面的不确定性如何影响此类辐射传输计算预测的准确性。我们发现,在深空中,在太阳活动极大期的GCR环境中,能量在0.3至0.85 GeV/核子之间的截面影响最大。在国际空间站,由于地磁截止,较高能量的截面影响最大。

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