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Physical Origin of Short Scale Plasma Structures in the Auroral F Region

机译:短尺度等离子体结构的物理起源在极光F地区

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摘要

The E×B drift instability in the auroral F region of the ionosphere is known to create long scale finger like plasma structures in the presence of a density inhomogeneity and an ambient electric field. These structures elongate mainly along the density inhomogeneity direction. In situ measurements as well as scattering experiments have also revealed the existence of small scale structures in this region. The authors propose that such structures are created due to the breakup of the long scale structures on account of their differential stretching from sheared electric fields. Using heuristic physical arguments and dimensional analysis the authors derive a general criterion for the onset of such breakups. The analytic results are validated from numerical simulations of the full set of basic nonlinear equations describing the instability and should prove useful in the prediction and interpretation of the spread F in the high latitude region.
机译:极光F E×B漂移不稳定性的地区电离层的创建长规模手指像等离子体结构的存在密度不均匀性和环境电字段。密度不均匀性的方向发展。测量以及散射实验也揭示了小规模的存在吗结构在这个地区。这样的结构是由于创建的分手的规模结构他们的微分从剪切电场。参数和量纲分析作者获得一个通用标准的发病分手。数值模拟的基本的全套非线性方程组描述的不稳定而且应该在预测和证明有用解释传播F的高纬度地区。

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