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A THEMIS multicase study of dipolarization fronts in the magnetotail plasma sheet

机译:忒弥斯多波dipolarization方面的研究在磁尾等离子体单

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We discuss results of a superposed epoch analysis of dipolarization fronts, rapid (δt 10 nT) increases in the northward magnetic field component, observed during six Time History of Events and Macroscale Interactions during Substorms (THEMIS) conjunction events. All six fronts propagated earthward; time delays at multiple probes were used to determine their propagation velocity. We define typical magnetic and electric field and plasma parameter variations during dipolarization front crossings and estimate their characteristic gradient scales. The study reveals (1) a rapid 50% decrease in plasma density and ion pressure, (2) a factor of 2-3 increase in high-energy (30-200 keV) electron flux and electron temperature, and (3) transient enhancements of ~5 mV/m in duskward and earthward electric field components. Gradient scales of magnetic field, plasma density, and particle flux were found to be comparable to the ion thermal gyroradius. Current densities associated with the B_z increase are, on average, 20 nA/m~2,5-7 times larger than the current density in the cross-tail current sheet. Because j · E > 0, the dipolarization fronts are kinetic-scale dissipative regions with Joule heating rates of 10% of the total bursty bulk flow energy.
机译:我们讨论的结果叠加分析时代dipolarization方面,快速(δt 10元)增加向北磁场分量,观察六个时期的历史事件和宏观尺度互动,在亚暴(裁判)一起事件。向地面;用于确定它们的传播速度。典型的磁场和电场和定义在dipolarization等离子体参数变化前面过境点,估计他们的特点梯度鳞片。等离子体密度和离子压力降低50%,(2)高能增加2 - 3倍(30 - 200 keV)电子通量和电子温度,(3)~ 5的瞬态增强mV / m duskward和向地面电场组件。等离子体密度、粒子通量被发现与离子热回转半径。电流密度与说是有关增加,平均20 nA / m ~ 2, 5 - 7倍的电流密度大于cross-tail当前表。dipolarization方面是kinetic-scale耗散率焦耳加热的区域总数的10%丛发性总体流动的能量。

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