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Effects of auroral potential drops on plasma sheet dynamics

机译:极光潜在的下降对等离子体的影响表动力学

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The reaction of the magnetosphere-ionosphere system to dynamic auroral potential drops is investigated using the Lyon-Fedder-Mobarry global model including, for the first time in a global simulation, the dissipative load of field-aligned potential drops in the low-altitude boundary condition. This extra load reduces the field-aligned current (j_||) supplied by nightside reconnection dynamos. The system adapts by forcing the nightside X line closer to Earth, with a corresponding reduction in current lensing (j_||/B = constant) at the ionosphere and additional contraction of the plasma sheet during substorm recovery and steady magnetospheric convection. For steady and moderate solar wind driving and with constant ionospheric conductance, the cross polar cap potential and hemispheric field-aligned current are lower by approximately the ratio of the peak field-aligned potential drop to the cross polar cap potential (10–15%) when potential drops are included. Hemispheric ionospheric Joule dissipation is less by 8%, while the area-integrated, average work done on the fluid by the reconnecting magnetotail field increases by 50% within |y|<8 R_E. Effects on the nightside plasma sheet include (1) an average X line 4 R_E closer to Earth; (2) a 12% higher mean reconnection rate; and (3) dawn-dusk asymmetry in reconnection with a 17% higher rate in the premidnight sector.
机译:magnetosphere-ionosphere的反应系统动态极光可能下降使用Lyon-Fedder-Mobarry全球调查模型包括,第一次在全球模拟,field-aligned的耗散负载潜在的下降在低空边界条件。当前(j_ field-aligned | |)提供的阴面重新连接发电机。通过迫使阴面X线接近地球,与相应的减少当前的透镜(j_ | | / B =常数)在电离层和额外的等离子体表在收缩磁层亚暴复苏和稳定对流。开车和恒定的电离层电导,十字架极冠潜力和半球field-aligned电流较低大约field-aligned峰值的比值潜在下降到十字架极冠潜力(10 - 15%),包括潜在的下降。半球电离层焦耳耗散较少8%,虽然area-integrated,平均工作时间在重新连接的流体磁尾领域内增加50% y | | < 8 R_E。在阴面等离子板包括(1)一个普通X线4 R_E接近地球;意味着重新连接率较高;不对称在重联率高出17%在premidnight部门。

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