Abstract Interplanetary drivers of daytime penetration electric field into equatorial ionosphere during CIR-induced geomagnetic storms
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Interplanetary drivers of daytime penetration electric field into equatorial ionosphere during CIR-induced geomagnetic storms

机译:白天渗透电场的截然驱动器进赤道电离层中赤道电离层

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Abstract Observations based on the magnetometer data of the response of the daytime equatorial electric field to the geomagnetic storms induced by corotating interaction regions (CIRs) during 2007–2010 reveal many events of striking long duration of multiple short-lived prompt penetration electric fields (PPEFs). The PPEFs essentially occurred in the main phase of the storms, which are associated with the ring current and magnetic reconnection of the southward z-component of the interplanetary magnetic field (IMF Bz) in relation to the Alfvén waves. The behaviors of the electric field penetration during the storms are consistent with the shielding theory. Particularly, the PPEF is found to be complex due to transient variations in the solar wind dynamic pressure (SWDP) and the IMF Bz in the CIRs. The PPEF is temporary suppressed for about an hour under a shock in association with a drop in the SWDP. The interplanetary electric field Ey is the main driver of the PPEFs, when the solar wind speed, SWDP, and the symmetric ring current are nearly constant, even in the recovery phase. The PPEF is allowed under the condition of high and variable SWDP. The shocks with a northward IMF Bz shield the PPEFs when the SWDP is nearly constant. The partial ring current is strongest in the large and northward IMF Bz, where the shielding effect is greater than the undershielding caused by the large SWDP. The results may provide an important step to study equatorial and low latitude ionospheric electrodynamics in the solar minimum conditions. 展开▼
机译:<![cdata [ 抽象 基于日间赤道电场响应的磁力计数据到2007年期间通过电气计互动区域(CIRS)诱导的地磁风暴的磁力计数据的观察2010年揭示了许多醒目的多个短寿命迅速渗透电场(PPEF)的持续时间。 PPEF基本上发生在暴风雨的主阶段,这与南方的环电流和磁重新连接相关联的 Z -TealiC> -ComponeL的关系中所在的关系到alfvén波浪。风暴期间电场渗透的行为与屏蔽理论一致。特别地,由于太阳风力压力(SWDP)和CIR中的IMF BZ,因此发现PPEF是复杂的。 PPEF在与SWDP中的液滴结合的冲击下暂时抑制约一个小时。当太阳风速,SWDP和对称环电流几乎恒定的情况下,截然电场Ey是PPEF的主要驱动器即使在恢复阶段也几乎是恒定的。在高和可变SWDP的条件下允许PPEF。当SWDP几乎恒定时,带向北IMF BZ的冲击屏蔽PPEF。在大型和向北的IMF BZ中,部分环电流最强,其中屏蔽效果大于由大型SWDP引起的下光。结果可以在太阳最小条件下研究赤道和低纬度电离层电动力学的重要步骤。

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