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首页> 外文期刊>Solar physics >Plasma and Magnetic-Field Characteristics of Magnetic Decreases in the SolarWind at 1 AU: Cluster-C1 Observations
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Plasma and Magnetic-Field Characteristics of Magnetic Decreases in the SolarWind at 1 AU: Cluster-C1 Observations

机译:1 AU下SolarWind中磁衰减的等离子体和磁场特征:Cluster-C1观测

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Magnetic decreases (MDs) are structures observed in interplanetary space with significant decreases in magnetic-field magnitude. Events with little or no change in the field direction are called linear magnetic decreases (LMDs), the others are called nonlinear MDs (NMDs). In this article we focus on LMD and NMD trains, where LMD trains are defined as at least three LMDs in a row and NMD trains as trains (≥ three MDs in a row) that are not all linear. If the temporal separation between twoMDs was shorter than five minutes, they were considered as one train event. A total of 16 273 MD trains (including 897 LMD trains and 15 376 NMD trains) were identified and studied. The details of the background magnetic-field and plasma (e.g. ion-density and velocity) features were examined and compared with the average solar-wind properties. LMD trains are found to occur in regions with relatively low magnetic-field strengths, high ion-number densities, and large plasma βs (ratio of the plasma thermal pressure to the magnetic pressure). In sharp contrast, NMD trains have plasma properties similar to the average solar wind. Forty-three LMD trains are related to interplanetary coronal mass ejections (ICMEs) (including 19 events that occurred in ICME sheaths and 24 in the ICME proper), while 222 LMD trains occurred in corotating interaction regions (CIRs), and the remaining 632 events in the normal solar wind. The LMD trains that occurred in ICME sheaths are thought to be associated with the generation mechanism of the mirror-mode instability. Only 552 of the NMD trains are related to ICMEs (including 236 events in ICME sheaths and 316 in ICMEs proper), while 3889 (25 %) NMD trains occurred in CIRs, and the remaining 71 % occurred in the normal solar wind. Because the NMD trains have various plasma properties that differ from the LMD trains, we suggest that NMD trains may be generated by different mechanisms, for instance by a steepening of Alfvén waves.
机译:磁衰减(MDs)是在行星际空间中观察到的结构,磁场强度明显下降。磁场方向变化很小或没有变化的事件称为线性磁减小(LMD),其他事件称为非线性MD(NMD)。在本文中,我们重点讨论LMD和NMD火车,其中LMD火车被定义为连续至少三个LMD,而NMD火车被定义为并非全部线性的火车(连续≥3个MD)。如果两个MD之间的时间间隔短于五分钟,则将它们视为一次火车事件。共确定和研究了16 273个MD火车(包括897辆LMD火车和15 376 NMD火车)。检查了背景磁场和等离子体的细节(例如离子密度和速度)特征,并将其与平均太阳风特性进行了比较。发现LMD列发生在磁场强度相对较低,离子数密度较高且等离子体βs(等离子体热压与磁压之比)较大的区域。与之形成鲜明对比的是,NMD列车的等离子特性类似于平均太阳风。 43个LMD火车与行星际冠状物质抛射(ICME)相关(包括发生在ICME鞘中的19个事件和发生在ICME固有的24个事件),而222个LMD火车发生在同向相互作用区域(CIR)中,其余632个事件在正常的太阳风中。在ICME护套中发生的LMD列被认为与镜像模式不稳定性的产生机理有关。只有552辆NMD列车与ICME有关(包括236件在ICME护套中发生的事件和316件在ICME中固有的事件),而3889件(占25%)NMD列车发生在CIR中,其余的71%发生在正常的太阳风中。因为NMD列具有与LMD列不同的各种等离子体特性,所以我们建议NMD列可能由不同的机制生成,例如通过Alfvén波的陡峭化。

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