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Global Map of Chorus Wave Sizes in the Inner Magnetosphere

机译:全球合唱波大小的地图磁气圈

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The dynamics of the radiation belts are largely affected by the resonant interactions of energetic particles with plasma waves, such as whistler mode chorus waves. These waves play a direct and crucial role in the acceleration and loss of radiation belt electrons. The properties of these waves have been investigated thoroughly using various missions that carried wave instruments within the inner magnetosphere. One of the most conspicuous properties of chorus waves is the size of the wave packets. Past studies have estimated the size of chorus wave packets as a function of radial distance, magnetic latitude, and geomagnetic activity. This study takes advantage of the comprehensive wave data from the Van Allen Probes mission to draw a global map of the size of chorus wave packets in the inner magnetosphere. Results show that the size of lower band chorus wave packets varies between ~1,000 and2,000 km depending on the intensity and activity of chorus waves in the inner magnetosphere. In general, the largest chorus wave packets are observed on the dawn-dayside where chorus wave activity is also high. The results will help us better understand the interaction region and the generation mechanism of the chorus waves.
机译:主要的动态辐射带共振相互作用的影响高能粒子与等离子体波,等惠斯勒合唱波模式。直接和加速度和至关重要的作用电子辐射带的损失。这些波已经彻底调查使用各种任务,波仪器内部磁气圈内。最引人注目的合唱的属性海浪波包的大小。研究估计合唱波的大小包作为径向距离的函数,磁纬度和地磁活动。研究利用综合波范艾伦辐射探测任务的数据画出全球的地图合唱波包的大小内部磁场。低乐队合唱波包的大小是不相同的~ 1000之间根据and2,000公里合唱波的强度和活动内部磁气圈。合唱波包上观察到dawn-dayside合唱波活动在哪里高。地区和生成的交互机制的合唱。

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