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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Propagation characteristics of plasmaspheric hiss: Van Allen Probe observations and global empirical models
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Propagation characteristics of plasmaspheric hiss: Van Allen Probe observations and global empirical models

机译:Plasmaspheric Hiss的传播特性:范艾伦探针观测和全球实证模型

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摘要

Based on the Van Allen Probe A observations from 1 October 2012 to 31 December 2014, we develop two empirical models to respectively describe the hiss wave normal angle (WNA) and amplitude variations in the Earth's plasmasphere for different substorm activities. The long-term observations indicate that the plasmaspheric hiss amplitudes on the dayside increase when substorm activity is enhanced (AE index increases), and the dayside hiss amplitudes are greater than the nightside. However, the propagation angles (WNAs) of hiss waves in most regions do not depend strongly on substorm activity, except for the intense substorm-induced increase in WNAs in the nightside low L-region. The propagation angles of plasmaspheric hiss increase with increasing magnetic latitude or decreasing radial distance (L-value). The global hiss WNAs (the power-weighted averages in each grid) and amplitudes (medians) can be well reproduced by our empirical models.
机译:基于Van Allen探讨2012年10月1日至2014年12月31日的观察,我们开发了两个实证模型,分别描述了地球斑块的HIS波正常角度(WNA)和幅度变化,以获得不同的代级活动。 长期观察表明,当增强物质活性(AE指数增加)时,诸如杜莎第升高的阶段振荡幅度增加,并且天柱HISS幅度大于夜间。 然而,除了在夜间低L区域中的温度诱导的WNAS中,除了大多数区域中Hiss波的传播角(Wnas)不会依赖于代表性活动。 通过增加磁纬度或降低径向距离(L值),散血丸的传播角度增加。 全球HISS WNA(每个网格中的电力加权平均值)和众幅度(中位数)可以通过我们的经验模型再现。

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