首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Meridional electric fields in layer-type and clump-type plasma structures in midlatitude sporadic e region: Observations and plausible mechanisms
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Meridional electric fields in layer-type and clump-type plasma structures in midlatitude sporadic e region: Observations and plausible mechanisms

机译:经向层类型和电场在中间纬度clump-type等离子体结构分散e地区:观察和合理机制

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The use of multibased line interferometry technique operated by a VHF coherent scatter radar with relatively broad radar beam pattern makes it possible to reveal zonal drift velocity of 3 m field-aligned irregularities (FAIs) inside moving layer-type or clump-type plasma structures at kilometer scale. We present compelling evidences in this article showing that, no matter what types of the plasma structures, the apparent zonal drift velocity of the 3 m FAIs is always linearly dependent on the zonal trace velocity (or bulk velocity) of the kilometer-scale plasma structure. This feature seems to imply that the bulk motion of the large-scale plasma structure may significantly affect the observed 3 m FAI Doppler velocity, which should be removed to obtain true FAI drift velocity. In addition, there is an evident tendency for the 3 m FAIs in the layer-type plasma structure to drift in the same zonal direction as the moving plasma structure. However, the correlation between the drift direction of the 3 m FAIs and the moving direction of the large-scale plasma structure is indistinct for the clump-type plasma structure. The meridional electric fields estimated from the true zonal FAI drift velocities for the layer-type plasma structures moving in the west (east) direction point in the northward/upward (southward/downward) direction. Statistical results show that the mean value of the meridional electric field inside the layer-type plasma structure is approximately 2.7-2.8 mV/m, about one order of magnitude larger than that for the clump-type plasma structure. Mechanisms that are, respectively, responsible for the generations of the layer-type and clump-type plasma structures are discussed in this article. It is believed that neutral wind shear is very likely the main cause of the layer-type plasma structure formation, while the clump-type plasma structure may be associated with propagating gravity wave. Key Points Developing a method to estimte meridional electric field inside plasma structure establishing relation between trace velocity and drift velocity wind shear theory favors the layer-type plasma structure formation
机译:multibased线干涉法的使用技术由一个甚高频相干散射相对广泛的雷达雷达波束模式可以揭示区域漂移速度3 m field-aligned违规行为(做)将层类型或clump-type等离子体结构公里范围。本文证据表明,不管什么类型的等离子体结构,明显的区域3 m做总是的漂移速度线性依赖于区域跟踪速度公里尺等离子体的速度(或大部分)结构。大规模的大部分运动等离子体结构观察到的3 m FAI有显著影响的可能多普勒速度,应删除获得真正的FAI漂移速度。有一个3米做的明显趋势层类型等离子体结构在海上漂流相同区域的方向移动的等离子体结构。3 m的漂移方向做运动大型等离子体结构的方向模糊的clump-type等离子体结构。经向电场的估计真正的纬向FAI的漂移速度层类型等离子体结构在西方移动(东)向北方向点/上升(南/向下)方向。结果表明,中值经向电场在层类型等离子体结构是大约2.7 - -2.8 mV / m,约一个数量级大于clump-type等离子体结构。分别负责一代又一代的层类型和clump-type等离子体结构是本文中讨论的。相信中性风切变非常层类型等离子体的主要原因结构形成,而clump-type等离子体结构可能与繁殖有关重力波。综合评价子午电场内部等离子体跟踪结构建立关系速度和漂移速度风切变的理论支持层类型等离子体结构的形成

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