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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >A statistical study of kinetic-size magnetic holes in turbulent magnetosheath: MMS observations
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A statistical study of kinetic-size magnetic holes in turbulent magnetosheath: MMS observations

机译:动力磁磁圈中动力学磁孔的统计研究:MMS观察

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Kinetic-size magnetic holes (KSMHs) in the turbulent magnetosheath are statistically investigated using high time resolution data from the Magnetospheric Multiscale mission. The KSMHs with short duration (i.e., 0.5 s) have their cross section smaller than the ion gyroradius. Superposed epoch analysis of all events reveals that an increase in the electron density and total temperature significantly increases (resp. decrease) the electron perpendicular (resp. parallel) temperature and an electron vortex inside KSMHs. Electron fluxes at similar to 90 degrees pitch angles with selective energies increase in the KSMHs are trapped inside KSMHs and form the electron vortex due to their collective motion. All these features are consistent with the electron vortex magnetic holes obtained in 2-D and 3-D particle-in-cell simulations, indicating that the observed KSMHs seem to be best explained as electron vortex magnetic holes. It is furthermore shown that KSMHs are likely to heat and accelerate the electrons.
机译:湍流磁性气垫中的动力学尺寸磁孔(KSMH)使用来自磁体多尺度任务的高时间分辨率数据进行统计研究。具有短持续时间(即,0.5秒)的KSMH的横截面小于离子Gyroradius。对所有事件的叠加时期分析显示电子密度的增加和总温度显着增加(resp。降低)电子垂直(RESP。并联)温度和KSMH中的电子涡流。类似于90度的电子磁通与90度的间距角度,KSMH中的选择性能量增加被捕获在KSMH内部,并由于它们的集体运动而形成电子涡流。所有这些特征与在2-D和3-D粒细胞仿真中获得的电子涡流磁孔一致,表明观察到的KSMH似乎最好地解释为电子涡流磁孔。此外表明KSMH可能热量加热并加速电子。

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