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首页> 外文期刊>Nature Communications >MMS observations of electron scale magnetic cavity embedded in proton scale magnetic cavity
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MMS observations of electron scale magnetic cavity embedded in proton scale magnetic cavity

机译:质子尺度磁腔中嵌入电子尺度磁腔的MMS观测

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摘要

Magnetic cavities (sometimes referred to as magnetic holes) at electron kinetic scale are thought to be one of the extremely small intermittent structures formed in magnetized turbulent plasmas, where the turbulence energy cascaded down to electron scale may finally be dissipated and consequently energize the electrons. However, the geometry and formation of these structures remain not definitively resolved. Here we discuss an electron scale magnetic cavity embedded in a proton scale magnetic cavity observed by the MMS spacecraft in the magnetosheath. By applying an innovative particle sounding technique, we directly depict the boundary of the electron scale magnetic cavity and uncover the geometry. We find that this structure is nearly circular with a radius of 10.0?km and its formation is due to the diamagnetic current. Investigation of the electron scale structure is only recently made possible by the high spatial and temporal resolution provided by MMS observations.
机译:在电子动力学尺度上的磁腔(有时称为磁孔)被认为是在磁化湍流等离子体中形成的极小的间歇结构之一,在那里级联到电子尺度的湍流能量最终可以被消散并因此激发电子。但是,这些结构的几何形状和形成仍未得到明确解决。在这里,我们讨论由MMS航天器在磁石堆中观察到的嵌入质子尺度磁腔中的电子尺度磁腔。通过应用创新的粒子探测技术,我们直接描绘了电子标尺磁腔的边界并揭示了几何形状。我们发现这种结构几乎是圆形的,半径为10.0?km,其形成是由于抗磁电流引起的。 MMS观测提供的高时空分辨率直到最近才使电子标尺结构的研究成为可能。

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