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Relationship between wave-like auroral arcs and Pi2 disturbances in plasma sheet prior to substorm onset

机译:亚暴爆发前波浪状极光弧与等离子层Pi2扰动的关系

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摘要

Wave-like substorm arc features in the aurora and Pi2 magnetic disturbances observed in the near-Earth plasma sheet are frequently, and sometimes simultaneously, observed around the substorm onset time. We perform statistical analyses of the THEMIS ASI auroral observations that show wave-like bright spot structure along the arc prior to substorm onset. The azimuthal mode number values of the wave-like substorm arcs are found to be in the range of ~100–240 and decrease with increasing geomagnetic latitude of the substorm auroral arc location. We suggest that the azimuthal mode number is likely related to the ion gyroradius and azimuthal wave number. We also perform correlation study of the pre-onset wave-like substorm arc features and Pi2 magnetic disturbances for substorm dipolarization events observed by THEMIS satellites during 2008–2009. The wave-like arc brightness structures on the substorm auroral arcs tend to move azimuthally westward, but with a few exceptions of eastward movement, during tens of seconds prior to the substorm onset. The movement of the wave-like arc brightness structure is linearly correlated with the phase velocity of the Pi2 δBy disturbances in the near-Earth plasma sheet region. The result suggests that the Pi2 transverse δBy disturbances are related to the intensifying wave-like substorm onset arcs. One plausible explanation of the observations is the kinetic ballooning instability, which has high azimuthal mode number due to the ion gyroradius effect and finite parallel electric field that accelerates electrons into the ionosphere to produce the wave-like arc structure.
机译:在近地等离子体层中观测到的极光中的波状亚暴电弧特征和Pi2磁扰动经常(有时同时)在亚暴爆发时间附近观测到。我们对THEMIS ASI的极光观测进行统计分析,这些观测显示了亚暴爆发之前沿弧线的波浪状亮点结构。发现波浪状亚风暴弧的方位模数值在〜100–240范围内,并随着亚风暴极光弧位置的地磁纬度的增加而减小。我们建议方位模数可能与离子陀螺半径和方位波数有关。我们还对THEMIS卫星在2008-2009年间观测到的亚暴双极化事件的波前波浪状亚暴弧特征和Pi2磁扰动进行了相关研究。亚风暴极光弧上的波浪状弧亮度结构倾向于向西方位角移动,但在东亚风暴爆发之前的几十秒内,除了一些东移运动外。波状电弧亮度结构的运动与近地等离子片区域中的Pi2δBy扰动的相速度线性相关。结果表明,Pi2的横向δBy扰动与波状增强的亚暴起弧有关。对这些观测结果的一种合理解释是动力学气球膨胀不稳定性,由于离子陀螺半径效应和有限的平行电场(将电子加速进入电离层以产生波状电弧结构),它具有较高的方位模数。

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