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Ion Larmor radius effects near a reconnection X line at the magnetopause: THEMIS observations and simulation comparison

机译:磁层顶重新连接X线附近的离子拉莫尔半径效应:THEMIS观测结果和模拟比较

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摘要

We report a Time History of Events and Macroscale Interactions during Substorms (THEMIS-D) spacecraft crossing of a magnetopause reconnection exhaust similar to 9 ion skin depths (d(i)) downstream of an X line. The crossing was characterized by ion jetting at speeds substantially below the predicted reconnection outflow speed. In the magnetospheric inflow region THEMIS detected (a) penetration of magnetosheath ions and the resulting flows perpendicular to the reconnection plane, (b) ion outflow extending into the magnetosphere, and (c) enhanced electron parallel temperature. Comparison with a simulation suggests that these signatures are associated with the gyration of magnetosheath ions onto magnetospheric field lines due to the shift of the flow stagnation point toward the low-density magnetosphere. Our observations indicate that these effects, similar to 2-3 d(i) in width, extend at least 9 d(i) downstream of the X line. The detection of these signatures could indicate large-scale proximity of the X line but do not imply that the spacecraft was upstream of the electron diffusion region.
机译:我们报告了亚暴(THEMIS-D)航天器穿越磁层顶重新连接排气时的事件和宏观相互作用的时程,类似于X线下游的9个离子集肤深度(d(i))。交叉口的特征在于离子喷射的速度大大低于预计的重新连接流出速度。在磁层的流入区域,THEMIS检测到(a)磁层石离子的渗透和所产生的垂直于重新连接平面的流动,(b)离子流延伸进入磁层,以及(c)电子平行温度升高。与模拟的比较表明,由于流动停滞点向低密度磁层的移动,这些特征与磁希斯离子在磁层磁场线上的回旋有关。我们的观察表明,这些效应类似于宽度2-3 d(i),在X线下游至少延伸了9 d(i)。这些签名的检测可能表明X线的大规模接近,但并不意味着航天器在电子扩散区的上游。

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