首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The Role of the plasmapause in dictating the ground accessibility of ELF/VLF chorus
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The Role of the plasmapause in dictating the ground accessibility of ELF/VLF chorus

机译:口述的等离子体层顶的作用地面易访问性的精灵/甚低频合唱

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This study explores the manner in which the plasmapause is responsible for dictating which magnetospheric source regions of ELF/VLF chorus are able to propagate to and be received by midlatitude stations on the ground. First, we explore the effects of plasmapause extent on ground-based observations of chorus via a 3 month study of ground-based measurements of chorus at Palmer Station, Antarctica (L = 2.4, 50°S geomagnetic latitude), and data on the plasmapause extent from the IMAGE EUV instrument. It is found that chorus normalized occurrence peaks when the plasmapause is at L ~ 2.6, somewhat higher than Palmer's L shell, and that this occurrence peak persists across a range of observed chorus frequencies. Next, reverse ray tracing is employed to evaluate the portion of the equatorial chorus source region, distributed in radial distance and wave normal, from which chorus is able to reach Palmer Station via propagation in a nonducted mode. The results of ray tracing are similar to those of observations, with a peak of expected occurrence when the plasmapause is at L ~ 3. The exact location of the peak is frequency dependent. This supports the conclusion that the ability of chorus to propagate to low altitudes and the ground is a strong function of instantaneous plasmapause extent and that peak occurrence of chorus at a given ground station may occur when the L shell of the plasmapause is somewhat beyond that of the observing station. These results also suggest that chorus observed on the ground at midlatitude stations propagates predominantly in the nonducted mode.
机译:本研究探索的方式等离子体层顶负责决定的精灵/磁性层的来源地区甚低频合唱能够传播和接收吗中间纬度站在地上。探索等离子体层顶程度上的影响通过三个月的地面观测的合唱研究地面测量的合唱帕尔默站,南极洲(L = 2.4, 50°S地磁纬度)和数据等离子体层顶程度从图像EUV乐器。发现合唱规范化山峰在L ~ 2.6等离子体层顶时,略高于帕默的L壳,这个出现峰值存在一系列持续存在观察到合唱频率。跟踪是用来评估的一部分赤道合唱来源地区,分布在径向距离和波正常,通过合唱能够达到帕默站在nonducted传播模式。射线追踪类似于观察,与预期的峰值出现时等离子体层顶在L ~ 3。峰值频率的依赖。合唱的能力的结论传播是一个低海拔和地上强大的瞬时等离子体层顶的函数程度上,峰值出现的合唱鉴于地面站L壳时可能发生等离子体层顶有点除此之外的观察。在中间纬度合唱观察到在地上电台传播为主nonducted模式。

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