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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Temporal Evolution of Substorm-Driven Global Alfvén Wave Power Above the Auroral Acceleration Region
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Temporal Evolution of Substorm-Driven Global Alfvén Wave Power Above the Auroral Acceleration Region

机译:代级加速区以上取代的全球ALFVÉN波力的时间演变

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The onset of substorms is associated with bursty enhancements of Alfvén wave power throughout the magnetotail. While impossible to assess the total Alfvén wave power in the entire magnetotail, we have instead monitored waves that are funneled into the auroral acceleration region, in order to assess the temporal evolution of Alfvén wave power above the nightside auroral zone in relation to substorm phases. The substorms were grouped by three conditions: nonstorm periods, storm periods, and all (unconditioned) periods. Using superposed epoch analysis, we found that the global magnetohydrodynamic Alfvén wave power increased significantly at onset for all three conditions, while a power decrease to preonset values occurred within 2 hr. Specifically, the peak inflowing power during the expansion phase was 5.7 GW for unconditioned substorms, 5.6 GW for nonstorm-time substorms, and 7.8 GW for storm-time substorms. These results correspond to power increases with respect to preonset values of 138%, 366%, and 200%, respectively. Additional analysis in relation to the aurora was performed for nonstorm-time substorms only. During the expansion phase, about 50% of the Alfvén wave power over the entire nightside auroral zone is collocated with the auroral bulge region. Furthermore, the total inflowing Alfvén wave power over the entire nightside auroral zone is 17% of the conjugate auroral power, while the inflowing power over the auroral bulge region is 32% of the conjugate aurora. However, allowing for a finite absorption efficiency inside the auroral acceleration region, the likely average Alfvénic contributions to the aurora are approximately 10% and 18%, respectively.
机译:成本发作与在整个磁靶中的Alfvén波电力的突发增强相关。虽然不可能在整个磁靶中评估总Alfvén波力,但是,我们已经监测了漏斗进入极光加速区域的波浪,以便评估夜间极光区上方的ALFVén波功率的时间演变与取代相。代价物在三个条件下进行分组:不斯式期,风暴期和所有(无条件)的时期。使用叠加的时期分析,我们发现全局磁力流体ALFVén波功率在所有三种条件下发病显着增加,而在2小时内发生功率降低至前折叠值。具体而言,对于无条件的代码物,膨胀阶段期间的峰值流入功率为5.7 GW,对于非级别计时的非级别代码物,5.6 GW,有7.8 GW用于风暴时间取代。这些结果分别对应于功率升高,相对于138%,366%和200%的前型值。对Aurora相关的额外分析仅对非级别计时代码表执行。在膨胀阶段期间,整个夜间极光区的约50%的Alfvén波电力与极光凸起区域并置。此外,整个夜间极光区上的总流入Alfvén波功率是共轭极光功率的17%,而极光凸起区域的流入功率是共轭极光的32%。然而,允许在极光加速区域内部有限吸收效率,对极光的可能平均Alfvénic贡献分别为约10%和18%。

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