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首页> 外文期刊>Annales Geophysicae >Magion 5 observations of chorus-like emissions and their propagation features as inferred from ray-tracing simulation
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Magion 5 observations of chorus-like emissions and their propagation features as inferred from ray-tracing simulation

机译:Magion 5对类合唱发射及其传播特征的观察,从光线跟踪模拟中推断

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After reviewing briefly the present state of knowledge about chorus-like emissions, we present an overview of Magion 5 satellite observations of these emissions in the inner magnetosphere of the Earth. From the extensive VLF data recorded on board the Magion 5 satellite, we show examples of different types of discrete elements, representing rising and falling tones, and discuss their spectral properties, such as the bandwidth and the characteristic frequency as compared to the equatorial electron gyrofrequency. We analyse the possibility of satellite observation of discrete elements, assuming nonducted wave propagation from the source. As for the characteristic dimension of the generation region, we apply the figures obtained from the recently published correlation analysis of chorus emission recorded by four satellites in the Cluster experiment. We conclude that different frequencies in the chorus element should be emitted in a certain span of wave normal angles, so that the whole element could be observed far from the generation region.Key words. Magnetospheric physics (plasmasphere; plasma waves and instabilities) – Space plasma physics (wave-particle interactions) – Ionosphere (wave propagation)
机译:在简要回顾了有关类合唱发射的当前知识状态之后,我们介绍了Magion 5卫星对地球内部磁层中这些发射的观测结果的概述。从Magion 5卫星上记录的大量VLF数据中,我们展示了代表上升和下降音调的不同类型离散元素的示例,并讨论了它们的频谱特性,例如与赤道电子陀螺仪频率相比的带宽和特征频率。我们假设来自源的非传导波传播,分析了卫星观测离散元素的可能性。至于生成区域的特征尺寸,我们应用了从最近发表的集群实验中四颗卫星记录的合唱发射相关分析中获得的数据。我们得出的结论是,应在一定的波法向角跨度内发射合唱元素中的不同频率,以便可以在远离生成区域的位置观察到整个元素。 关键词。 磁层物理(等离子层;等离子体波和不稳定性)–空间等离子体物理(波粒相互作用)–电离层(波传播)

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