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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Magnetospheric effects in cosmic rays during the unique magnetic storm on November 2003
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Magnetospheric effects in cosmic rays during the unique magnetic storm on November 2003

机译:在宇宙射线磁性层的影响独特的磁性风暴在2003年11月

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摘要

Cosmic ray variations due to changes in the magnetosphere are evaluated for severe magnetic storm on 20 November 2003 using data from the worldwide neutron monitor network and the global survey method. From these results the changes in the planetary distribution of magnetic cutoff rigidities during this disturbed period are obtained in dependence of latitude. A correlation between Dst index and cutoff rigidity variations was defined for each cosmic ray station. The maximum changes in cutoff rigidities occurred while Dst index was around ?472 nT. Geomagnetic effect in cosmic ray intensity reached at some stations 6–8%, and it seems to be the greatest one over the history of neutron monitor observations. The latitudinal distribution shows a maximum changes at geomagnetic cutoff rigidities around 7–8 GV. This corresponds to unusually low latitudes for maximal effect. Cutoff rigidity variations were also calculated utilizing the last model of Tsyganenko for a disturbed magnetosphere (T01S). A comparison between experimental and modeling results revealed a big discrepancy at cutoff rigidities less than 6 GV. The results on the geomagnetic effect in cosmic rays can be used for validating magnetospheric field models during very severe storms.
机译:宇宙射线的变化的变化造成的磁气圈是严重的磁评估使用数据从2003年11月20日风暴世界范围内的中子监视网络和全球调查方法。行星的磁场分布刚性这打扰期间获得纬度的依赖。Dst指数和截止刚度变化之间的关系被定义为每一个宇宙射线。最大截止刚度发生变化虽然Dst指数? 472元,地磁宇宙射线强度效果达到了一些站6 - 8%,这似乎是最伟大的1 /中子监测器的历史观察。最大的变化在地磁截止刚性约7 - 8问。不同寻常的低纬度地区的最大效果。截止刚度变化也被计算利用最后的Tsyganenko模型干扰磁气圈(t01)。实验和模拟结果之间显示一个大的差异在截止僵化不到6问。在宇宙射线可以用来验证效果在非常严重的磁性层的领域模型风暴。

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