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Influence of heavy ionospheric ions on substorm onset

机译:重电离层离子对亚暴发病

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Multifluid/multiscale simulations are used to examine the influence of ionospheric outflows on two substorms that occurred on August 13, 2001. Both substorms had well defined onsets in Cluster ion spectrometer (CIS) data of ion composition of the plasma sheet. It is shown that the model is able to account for two orders of magnitude variation in the H+ density and one order of magnitude change in the O~+ density in the plasma sheet in association with the ionosphere generating peak outflows of 4 × 10~(25) H~+ ions/s and 2 × 10~(25) O~+ ions/s. The model shows that the growth phase is associated with the venting of solar wind plasma in association with the formation of an X‐line and the ejection of a plasmoid. This reconnection occurs in a proton‐dominated plasma and occurs well before onset. After this venting, a Y‐line configuration develops with the ionospheric plasma being the dominant source of the plasma sheet. Lobe reconnection involves heavy enriched O~+ lobe field lines produced by enhanced outflows that start at the beginning of the growth phase. This O~+ produces enhanced dissipation and localized formation of flux ropes prior to substorm onset. For the isolated substorms considered here, the acceleration of O~+ in the plasma sheet keeps the density low in this region but leads to the buildup of both number and density at the inner edge of the plasma sheet. O~+ can contribute nearly 50% of the total energy density in this region just prior to onset. This results in over pressurization and dipolarization in conjunction with onset and associated increases in the nightside auroral currents.
机译:Multifluid /多尺度模拟被用来检查电离层外流的影响两个亚暴的发生在2001年8月13日。两次风暴在集群定义良好的发作离子谱仪(CIS)离子组成的数据等离子体单。能够占到两个数量级H +浓度的变化和一个顺序级O ~ +在等离子体密度的变化表与电离层产生峰值流出的4×10 ~ (25)H ~ +离子/ s和2×10 ~ (25)O ~ +离子/ s。显示与增长阶段太阳风等离子体的发泄形成一个X线和弹射等离子粒团。质子的主导等离子体和发生之前发病。与电离层等离子体的发展等离子体的主要来源表。重新连接需要大量丰富O ~ +叶增强的流出,产生的电场线从头开始的增长阶段。O ~ +产生增强的耗散和本地化亚暴发作之前形成通量绳。这里的孤立的亚暴的考虑的加速等离子板使O ~ +这个地区密度低而导致内部积累的数量和密度等离子体片的边缘。近50%的总能量密度地区出现之前。增压和dipolarization相结合发病和增加有关阴面极光电流。

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