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Signatures of substorm related overshielding electric field at equatorial latitudes under steady southward IMF Bz during main phase of magnetic storm

机译:稳定南南IMF BZ磁场稳步南部IMF BZ下赤纬潜水差价相关电场的签名

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During the geomagnetic storm periods, the convection electric field penetrates promptly to equatorial latitudes, causing an eastward electric field in the dayside ionosphere. Occasionally, the polarity of the dayside ionospheric electric field is inverted when the Interplanetary Magnetic Field (IMF) turns northward. In this paper, interesting observations of the strong westward electric field in the day side equatorial latitudes are presented, as evidenced by strong Counter Electrojet (CEJ) at Indian and Japanese sectors under the steady southward IMF Bz. The westward electric field perturbations are quite large with CEJ amplitude of similar to-120 nT over the Indian sector (14-15 December 2006) and similar to-220 nT for Japanese sector (7-8 November 2004). The plausible mechanisms for the observed overshielding electric fields under steady southward IMF Bz have been investigated in light of the possible role of substorm activity. The clear signatures of substorm were observed at geosynchronous particle flux measurements from LANL (Los Alamos National Laboratory) satellite and associated with sudden decrease in AL index. The observed variations of asymmetric ring current shows the enhancement of Partial Ring Current (PRC) at the dusk sector further supporting the substorm onset during that period which will probably enhance the overshielding due to increased Region 2 Field-Aligned Currents (R2 FACs). The observations of such significantly large amplitudes of CEJ associated with the substorm related overshielding events are sparse and the results bring out the important role of substorm onset and the development of PRC in accordance with the R2 FACs during intense magnetic storms which alter the day time equatorial electric field perturbations. (C) 2019 COSPAR. Published by Elsevier Ltd. All rights reserved.
机译:在地磁风暴期间,对流电场迅速穿透到赤道纬度,导致天水层中的东方电场。偶尔,当行星磁场(IMF)向北转动时,倒计杜云电离层电场的极性反转。在本文中,展示了当天赤道纬度的强烈西方电场的有趣观察,如强大的南方IMF BZ下的印度和日本部门所证明的强烈计数器电气喷射(CEJ)所证明。西方电场扰动与印度部门(2006年12月14日至15日)和日本部门(2004年12月14日至14日)相似的CEJ振幅相当大。鉴于Impermact活动的可能作用,已经研究了在稳定南方IMFBZ下观察到的过光电场的合理机制。从LANL(LOS Alamos National Laboratory)卫星的地球同步粒子通量测量中观察到含量的清晰签名,并与Al指数突然减少相关。观察到的不对称环电流的变化示出了在该时段期间进一步支持代替扇区的偏环电流(PRC)的增强,这在该时段可能由于增加的区域2场对准电流(R2 FACS)而可能增强过光。与代壳相关的过光事件相关的这种明显大的CEJ的观察稀疏,结果在激烈的磁风暴期间r2 FACS引发了r2 facs的成绩发作和中国的发展的重要作用电场扰动。 (c)2019 Cospar。 elsevier有限公司出版。保留所有权利。

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