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Magnetic forces associated with bursty bulk flows in Earth's magnetotail

机译:与地球磁尾中的爆炸性大量流动相关的磁力

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摘要

We present the first direct measurements of magnetic forces acting on bursty bulk flow plasma in the magnetotail. The magnetic forces are determined using Cluster multispacecraft measurements. We analyze 67 bursty bulk flow (BBF) events and show that the curvature part of the magnetic force is consistently positive, acting to accelerate the plasma toward Earth between approximately 10 and 20 R-E geocentrical distances, while the magnetic field pressure gradient increasingly brakes the plasma as it moves toward Earth. The net result is that the magnetic force accelerates the plasma at distances greater than approximately 14 R-E, while it acts to decelerate it within that distance. The magnetic force, together with the thermal pressure gradient force, will determine the dynamics of the BBFs as they propagate toward the near-Earth tail region. The determination of the former provides an important clue to the ultimate fate of BBFs in the inner magnetosphere.
机译:我们介绍了作用在磁尾中的突发性大流量等离子体上的磁力的第一个直接测量值。磁力是使用“聚类”多宇宙飞船的测量结果确定的。我们分析了67次突发性大流量(BBF)事件,并显示了磁力的曲率部分始终为正,从而使等离子向地球加速了大约10到20 RE地心距之间的速度,而磁场压力梯度逐渐使等离子制动当它向地球移动时。最终结果是,磁力使等离子体在大于约14 R-E的距离处加速,同时使该距离内的等离子体减速。磁力与热压力梯度力一起将决定BBF向近地尾巴区域传播时的动力学。前者的确定为内部磁层中BBF的最终命运提供了重要线索。

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