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由环电流的宇宙线效应验证二维对称环电流模型
引用本文:孙小青, 叶宗海. 由环电流的宇宙线效应验证二维对称环电流模型[J]. 空间科学学报, 1993, 13(2): 140-145. doi: 10.11728/cjss1993.02.140
作者姓名:孙小青 叶宗海
作者单位:中国科学院空间科学与应用研究中心, 北京100080
摘    要:
本文利用不同纬度超中子堆记录的宇宙线强度, 对不同磁暴类型下环电流的宇宙线效应进行了分析。加强的西向环电流使宇宙线截止刚度下降, 在某些特大的磁暴中, 中低纬字宙线截止刚度下降可达1GV以上, 从而使宇宙线强度增加。利用二维对称环电流模式, 从宇宙线的角度计算了环电流的磁暴效应。与实际观测值的对比显示, 除非特大的磁暴过程, 利用该模式所得结果与实际观测符合得较好。

关 键 词:宇宙线暴时增加   地磁截止刚度   环电流   地磁暴
收稿时间:1991-08-26
修稿时间:1900-01-01

CHECKING TWO-DIMENSIONAL SYMMETRIC MODEL OF RING CURRENT BY THE EFFECTS OF EQUATORIAL RING CURRENTS ON COSMIC RAY
Sun Xiao-qing Ye Zong-hai, . CHECKING TWO-DIMENSIONAL SYMMETRIC MODEL OF RING CURRENT BY THE EFFECTS OF EQUATORIAL RING CURRENTS ON COSMIC RAY[J]. Chinese Journal of Space Science, 1993, 13(2): 140-145. doi: 10.11728/cjss1993.02.140
Authors:Sun Xiao-qing Ye Zong-hai
Affiliation:Center for Space Science and Applied Research, Acadetnia Sinica, Beijing 100080
Abstract:
Using the data from 11 ground-based super neutron monitors, this paper deals with the effects of equatorial ring currents on cosmic rays, which include that of storm-time increases and cut off rigidities in the analysis of this paper, during periods of six geomagnetic storms of 1984-1989. It is shown that the storm-time increases are due to the existence of westward equatorial ring currents developing or intensifying during geomagnetic storms. The storm-time increases are of latitude and local time dependence and the intensifying ring currents can cause the depression of cosmic ray cutoff rigidities. By comparing the storm-time increases and the registrations of H-component recorded by Beijing Standard Seismic Station. It can be seen that they correlate negatively with each other. On the basis of two-dimensional symmetric model of ring current, it is also shown that, except some very large storms, the expected decreases of H-component originated from a ring current which are calculated with this model are in good agreement with the actual observations on the ground.
Keywords:Storm time increase of cosmic ray   Ring current   Geomagnetic cut off ri-gidity   Geomagnetic storm  
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