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首页> 外文期刊>Annales Geophysicae >Ionospheric conductivity dependence of dayside region-0,1, and 2 field-aligned current systems: statistical study with DMSP-F7
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Ionospheric conductivity dependence of dayside region-0,1, and 2 field-aligned current systems: statistical study with DMSP-F7

机译:白天区域-0、1、2场对准电流系统对电离层电导率的依赖性:DMSP-F7的统计研究

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The present study statistically examines the dependence of the intensities of dayside (MLT=8-12h) large-scale field-aligned currents (FACs) on the ionospheric conductance using the summary data of DMSP-F7 constructed by the procedure of Higuchi and Ohtani (2000). We have found that, in the dayside region, R1 and R0 have a higher correlation between ionospheric conductivity and FAC intensity than R2, suggesting that R0 and R1 are driven by a more voltage-like source than R2. This result is consistent with the idea that R1 and R0 are driven by the interaction between the solar wind and the open magnetospheric magnetic field. We have also found that dayside FAC intensities are latitudinally well balanced when they have a three sheet structure (R0, R1 and R2); on the other hand, for a two sheet structure (R1 and R2), the intensity of R1 is larger than that of R2, so that the net current has the polarity of R1.
机译:本研究使用由Higuchi和Ohtani的程序构建的DMSP-F7的汇总数据,从统计学上检验了日间(MLT = 8-12h)大型场取向电流(FAC)的强度对电离层电导的依赖性( 2000)。我们发现,在日间区域,R1和R0在电离层电导率和FAC强度之间的相关性高于R2,这表明R0和R1是由比R2更多的电压源驱动的。此结果与以下想法一致:R1和R0由太阳风和开放的磁层磁场之间的相互作用驱动。我们还发现,当日间FAC强度具有三层结构(R0,R1和R2)时,它们在纬度上平衡良好。另一方面,对于两片结构(R1和R2),R1的强度大于R2的强度,因此净电流具有R1的极性。

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