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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Magnetic Reconnection in Three Dimensions: Modeling and Analysis of Electromagnetic Drift Waves in the Adjacent Current Sheet
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Magnetic Reconnection in Three Dimensions: Modeling and Analysis of Electromagnetic Drift Waves in the Adjacent Current Sheet

机译:在三维空间磁场重联:电磁漂移的建模和分析在邻电流片

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摘要

We present a model of electromagnetic drift waves in the current sheet adjacent to magnetic reconnection at the subsolar magnetopause. These drift waves are potentially important in governing 3‐D structure of subsolar magnetic reconnection and in generating turbulence. The drift waves propagate nearly parallel to the X line and are confined to a thin current sheet. The scale size normal to the current sheet is significantly less than the ion gyroradius and can be less than or on the order of the wavelength. The waves also have a limited extent along the magnetic field (B), making them a three‐dimensional eigenmode structure. In the current sheet, the background magnitudes of B and plasma density change significantly, calling for a treatment that incorporates an inhomogeneous plasma environment. Using detailed examination of Magnetospheric Multiscale observations, we find that the waves are best represented by series of electron vortices, superimposed on a primary electron drift, that propagate along the current sheet (parallel to the X line). The waves displace or corrugate the current sheet, which also potentially displaces the electron diffusion region. The model is based on fluid behavior of electrons, but ion motion must be treated kinetically. The strong electron drift along the X line is likely responsible for wave growth, similar to a lower hybrid drift instability. Contrary to a classical lower hybrid drift instability, however, the strong changes in the background B and no, the normal confinement to the current sheet, and the confinement along B are critical to the wave description.
机译:我们提出一个模型的电磁漂移波在当前表相邻磁重新连接在现世的磁层。漂移波是潜在的重要管理3 D现世的磁结构重新连接,产生动荡。漂移波传播几乎平行于X行,局限于一个薄电流片。当前表规模大小正常比离子回转半径和大大减少可以小于的顺序吗波长。沿着磁场(B),使它们三维结构固有模式。当前的表,背景震级B和等离子体密度变化显著,呼吁一个治疗,它整合了一个非均匀等离子体环境。磁性层的多尺度的观察,我们发现海浪是最好由一系列表示电子漩涡,叠加在一个主电子漂移,沿着目前的传播表(平行于X线)。取代或起皱当前表也可能取代电子扩散地区。电子,但离子运动必须治疗活动。X线可能负责波增长,类似于一个较低的混合漂移不稳定性。相反一个经典低混合漂移然而,不稳定,强烈的变化背景B和不,正常分娩电流片,监禁在B波描述至关重要。

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