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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Transmission line model for the near-instantaneous transmission of the ionospheric electric field and currents to the equator
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Transmission line model for the near-instantaneous transmission of the ionospheric electric field and currents to the equator

机译:输电线路近乎即时的榜样电离层电场的传播赤道和洋流

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The simultaneous onset of the preliminary impulse (PI) of the geomagnetic sudden commencement at high latitude and dayside dip equator is explained by means of the TM_0 mode waves propagating at the speed of light in the Earth-ionosphere waveguide (EIW) [Kikuchi et al., 1978]. A couple of issues remain to be addressed in the EIW model: (1) How is the TM_0 mode wave excited by the field-aligned currents (FACs) in the polar region? (2) How are the quasi-steady ionospheric currents achieved by the TM_0 mode waves? (3) How simultaneous or delayed are the onset and peak of the equatorial PI with respect to the high-latitude PI? To address these issues, we examine the TEM (TM_0) mode wave propagation in the finite-length transmission lines replacing the pair of FACs (magnetosphere-ionosphere (MI) transmission line) and the Earth-ionosphere waveguide (ionosphere-ground (IG) transmission line). The issue (1) is addressed by showing that a fraction of the TEM mode wave is transmitted from the MI to IG transmission lines through the polar ionosphere. To address the issues (2) and (3), we examine the properties of the finite-length IG transmission line with finite ionospheric conductivity. It is shown that the ionospheric currents start to grow instantaneously and continue to grow gradually with time constants of 1–10 s depending on the ionospheric conductivity. The MIG transmission line enables us to explain the instantaneous onset and delayed peak time of the equatorial PI and quick electric field response of the low-latitude ionosphere and inner magnetosphere.
机译:同时开始初步的冲动(π)地磁突然开始的高和纬度的光面磁赤道通过TM_0模波解释说以光速传播的Earth-ionosphere波导(应急注水)[菊池et al .,1978]。在应急注水模型:(1)如何TM_0模波field-aligned兴奋的电流(流式细胞仪)极地区域?电离层电流通过TM_0模式波?发病高峰的赤道π的尊重的高纬度π吗?我们检查TEM (TM_0)波传播模式在有限长输电线路更换对流式细胞仪(magnetosphere-ionosphere (MI)输电线路)和Earth-ionosphere波导(ionosphere-ground (IG)传播线)。TEM模式波传播的一小部分从MI IG输电线路通过极地电离层。(3),我们检查的属性有限长搞笑与有限的输电线路电离层电导率。电离层电流开始生长瞬间,继续逐渐成长1 - 10 s取决于时间常数电离层电导率。使我们能够解释瞬时发病和延迟赤道π的高峰时间和快速电场响应的低纬度电离层和内心的磁气圈。

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