首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Modulation of WhistlerWaves by Ultra-Low-Frequency Perturbations: The Importance of Magnetopause Location
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Modulation of WhistlerWaves by Ultra-Low-Frequency Perturbations: The Importance of Magnetopause Location

机译:调制的WhistlerWaves Ultra-Low-Frequency扰动:磁层的重要性位置

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Ultra-low-frequency (ULF, 0.001-1 Hz) perturbations are important aspect of the dynamics in the inner magnetosphere: They are responsible for radial transport (diffusion) of high-energy electrons and for energizing the ionosphere with field-aligned currents. This study is devoted to properties of ULF perturbations generated at the magnetopause, their propagation into the inner magnetosphere, and their modulation of whistler-mode very-low-frequency (VLF) waves. Taking advantage of the Time History of Events and Macroscale Interactions during Substorms (THEMIS) mission configuration in 2019, we investigate ULF perturbations simultaneously captured by three spacecraft at different distances from the magnetopause. Combining ground-based and THEMIS measurements of ULF perturbations to separate temporal and spatial variations of their properties, we show that their intensity decays exponentially with distance from the magnetopause as close as the geostationary orbit. Near the magnetopause ULF perturbations can modulate whistler-mode (VLF) waves effectively: Close to the magnetopause, VLF wave bursts have the same periodicity as the ULF perturbations. Our results demonstrate that almost the entire outer magnetosphere (from the geostationary orbit to L~12), including the outer radiation belts, is significantly influenced by ULF perturbations excited by magnetopause dynamic responses to the solar wind.
机译:Ultra-low-frequency (ULF 0.001 - 1 Hz)扰动的重要方面动力学的磁气圈:负责径向传输(扩散)高能电子和能量的电离层field-aligned电流。研究致力于ULF的属性在磁扰动生成,他们传播到内心的磁气圈,whistler-mode及其调制甚低频电波(甚低频)。时间的历史事件和宏观尺度在亚暴(裁判)任务的交互配置在2019年,我们调查ULF同时被三个扰动飞船在不同的距离磁层。测量的ULF扰动分开时间和空间的变化属性,我们表明,他们的强度衰减与磁层的距离指数接近地球静止轨道。磁层ULF扰动可以调节whistler-mode(甚低频)波有效:接近磁层,甚低频波爆发有相同的周期性ULF扰动。证明几乎整个外磁气圈(从地球静止轨道L ~ 12),包括外辐射带明显受ULF扰动的影响兴奋不已的磁动态反应太阳风。

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