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A new non-pressure-balanced structure in interplanetary space: Boundary layers of magnetic clouds

机译:行星际空间中的一种新的非压力平衡结构:磁云的边界层

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Here is analyzed the observational data of 70 magnetic cloud boundary layers (BLs) from the Three-Dimensional (3-D) Plasma and Energetic Particle (3DP) and 50 BLs from the Solar Wind Experiment (SWE) instruments on Wind spacecraft from February 1995 to June 2003. From this analysis, we discover that the boundary layer of a magnetic cloud is a new non-pressure-balanced structure different from the jump layer (i.e., shocked front) of an interplanetary shock wave. The main results are that (1) the BL is often a non-pressure-balanced structure with the magnetic pressure decrease associated with the abrupt variation of field direction angle (, ) for about 90% and more than 85% of the BLs investigated from 3DP and SWE data, respectively; (2) the events of heated and accelerated plasma in the BLs are about 90%, 85% and 85%, 82% of the BLs investigated, respectively, from 3DP and SWE data; (3) the reversal flows are observed and their occurrence ratio is as high as 80% and 90% of the BLs investigated from 3DP and SWE data, respectively; and (4) the plasma and field characteristics for the BLs are also obviously different from those in the jump layers (JLs) of shock waves. These results show that there exist important dynamic interactions inside the BLs. As a preliminary interpretation, this could be associated with the magnetic reconnection process possibly occurring inside the BLs. Thus the study of the BLs, as a new non-pressure-balanced structure in interplanetary space, could open a “new window” for revealing some important physical processes in interplanetary space.
机译:本文分析了1995年2月来自三维(3-D)等离子体和高能粒子(3DP)的70个磁云边界层(BLs)和来自太阳风实验(SWE)仪器的50个BLs的观测数据到2003年6月为止。通过这一分析,我们发现磁云的边界层是一种新的非压力平衡结构,不同于行星际激波的跳跃层(即激波前部)。主要结果是:(1)BL通常是一种非压力平衡结构,其磁压下降与场方向角(,)的突然变化有关,约占BL的90%,超过85%, 3DP和SWE数据; (2)根据3DP和SWE数据,在BL中加热和加速等离子体的事件分别约为所研究BL的90%,85%和85%,82%。 (3)观察到逆流,其发生率分别高达3DP和SWE数据调查的BL的80%和90%。 (4)BL的等离子体和场特征也与冲击波的跳跃层(JLs)明显不同。这些结果表明在BL内部存在重要的动态相互作用。作为初步解释,这可能与BL内部可能发生的磁重新连接过程相关。因此,对BLs的研究作为行星际空间中一种新的非压力平衡结构,可以为揭示行星际空间中一些重要的物理过程打开一个“新窗口”。

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