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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The 'zebra stripes': An effect of F region zonal plasma drifts on the longitudinal distribution of radiation belt particles
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The 'zebra stripes': An effect of F region zonal plasma drifts on the longitudinal distribution of radiation belt particles

机译:“斑马条纹”:F区带状等离子体漂移对辐射带粒子纵向分布的影响

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摘要

We examine a characteristic effect, namely, the ubiquitous appearance of structured peaks and valleys called zebra stripes in the spectrograms of energetic electrons and ions trapped in the inner belt below L ~ 3. We propose an explanation of this phenomenon as a purely kinematic consequence of particle drift velocity modulation caused by F region zonal plasma drifts in the ionosphere. In other words, we amend the traditional assumption that the electric field associated with ionospheric plasma drives trapped particle distributions into rigid corotation with the Earth. An equation based on a simple first-order model is set up to determine quantitatively the appearance of zebra stripes as a function of magnetic time. Our numerical predictions are in agreement with measurements by the Radiation Belt Storm Probes Ion Composition Experiment detector onboard Van Allen Probes, namely: (1) the central energy of any peak identified in the spectrum on the dayside is the central energy of a spectral valley on the night side, and vice versa; (2) there is also an approximate peak-to-valley inversion when comparing the spectrum of trapped electrons with that of trapped ions in the same place; and (3) the actual energy separation between two consecutive peaks (or number of stripes) in the spectrogram of a trapped population is an indicator of the time spent by the particles drifting under quiet conditions.
机译:我们研究了一种特殊的影响,即在L〜3以下的内带中捕获的高能电子和离子的频谱图中,普遍存在的结构化峰和谷称为斑马条纹的出现,我们提出了这种现象的解释,其纯粹是运动学上的结果。 F区带状等离子体在电离层中的漂移引起的粒子漂移速度调制。换句话说,我们修正了传统的假设,即与电离层等离子体相关的电场将捕获的粒子分布驱动为与地球刚性旋转。建立基于简单一阶模型的方程式,以定量确定作为磁时间函数的斑马条纹的出现。我们的数值预测与Van Allen Probes上的辐射带风暴探针离子组成实验检测器的测量结果相符,即:(1)在白天光谱中识别出的任何峰的中心能量是位于光谱上的光谱谷的中心能量。晚上,反之亦然; (2)比较在同一位置捕获的电子的光谱与捕获的离子的光谱时,还有一个近似的峰谷反转; (3)捕获种群的频谱图中两个连续峰值(或条纹数)之间的实际能量分离是指示粒子在安静条件下漂移所花费的时间的指标。

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