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Interhemispheric field-aligned currents: Simulation results

机译:两半球间的field-aligned电流:仿真结果

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We present simulation results of the 3-D magnetosphere-ionosphere current system including the Region 1 and Region 2 field-aligned currents, ionospheric currents, and interhemispheric field-aligned currents flowing between the northern and southern conjugate ionospheres in the case of asymmetry in ionospheric conductivities in two hemispheres. The model shows that the interhemispheric currents can be an important part of the global 3-D current system in high-latitude ionosphere, especially during summer-winter months, when in winter ionosphere they can be comparable and even exceed both Region 1 and Region 2 currents. An important feature of these interhemispheric currents is that they link together processes in two hemispheres, so that the currents observed in one hemisphere can provide us with information about the currents in the opposite hemisphere. Although the interhemispheric currents might play a notable role in the total 3-D current system, they have not been sufficiently studied yet. The study of the contribution from the interhemispheric currents into the total 3-D current systemallows us to improve understanding and forecasting of geomagnetic, auroral, and ionospheric disturbances in two hemispheres.
机译:我们提出三维的仿真结果magnetosphere-ionosphere当前系统包括区域1和区域2 field-aligned电流,电离层电流,两半球间的field-aligned电流之间的流动北部和南部共轭电离层电离层的不对称的情况下导率在两个半球。表明,两半球间的电流全球3 d的一个重要组成部分在高纬度地区电离层系统,特别是summer-winter月期间,在冬天的时候电离层可比,甚至超过区域1和区域2电流。这些两半球间的电流特性他们的过程在两个连接在一起观察到在一个半球,这样电流半球可以为我们提供信息电流相反的半球。两半球间的电流可能发挥在当前系统总3 d引人注目的角色,他们还没有被充分研究。研究的贡献两半球间的电流进入3 d当前systemallows我们改进的理解和预测的地磁、极光和在两个半球电离层扰动。

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