首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Low-latitude ionospheric electric and magnetic field disturbances in response to solar wind pressure enhancements
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Low-latitude ionospheric electric and magnetic field disturbances in response to solar wind pressure enhancements

机译:低纬度电离层电场和磁场干扰,以响应太阳风压力的增强

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摘要

We study the characteristics of the low-latitude ionospheric electric field and geomagnetic field in response to a sudden enhancement of the solar wind pressure. When the magnetosphere is compressed by an interplanetary shock, a significant enhancement in the dayside equatorial ionospheric ion vertical velocity occurs over 30–40 min and is measured by the Jicamarca incoherent scatter radar. A similar enhancement occurs in the high-latitude ionospheric convection and is detected by the SuperDRAN HF radars. The simultaneous enhancements of the ionospheric ion velocity at high and low latitudes provide strong evidence of the occurrence of penetration electric fields produced by solar wind pressure enhancements. The geomagnetic field first increases rapidly over 2–3 min and then falls over 30–40 min to an asymptotic value. The enhanced magnetic field occurs from the subauroral region to the equator at all local times. The time scale of 30–40 min is much longer than the conventional preliminary and main impulses of geomagnetic response to interplanetary shocks. There are two possible mechanisms that may be responsible for the generation of the enhanced ionospheric electric and magnetic fields. One mechanism is that the solar wind shock causes an over-compression of the magnetosphere, and the other is that the field-aligned and ionospheric currents driven by the solar wind shock cause the enhancements of the ionospheric electric and magnetic fields. However, neither of the mechanisms appears to be able to provide a complete explanation of all observed features.
机译:我们研究了低纬度电离层电场和地磁场响应太阳风压突然增强的特性。当磁层被行星际撞击压缩时,日赤道电离层离子垂直速度在30–40分钟内显着增强,这是由Jicamarca非相干散射雷达测得的。在高纬度电离层对流中也会发生类似的增强现象,SuperDRAN HF雷达会检测到这种增强现象。在高纬度和低纬度电离层离子速度的同时增强,提供了太阳风压增强产生的穿透电场发生的有力证据。地磁场首先在2-3分钟内迅速增加,然后在30-40分钟内下降至渐近值。增强的磁场在所有本地时间都从耳下区域到赤道发生。 30-40分钟的时间范围比传统的对行星际震动的地磁响应的初步和主要冲动要长得多。有两种可能的机制可能会产生增强的电离层电场和磁场。一种机制是太阳风冲击引起磁层的过度压缩,另一种机制是太阳风冲击驱动的场取向电流和电离层电流引起电离层电场和磁场的增强。但是,这两种机制似乎都不能对所有观察到的特征提供完整的解释。

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