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Determining the Global Scale Size of Chorus Waves in the Magnetosphere

机译:确定的全球规模大小合唱在磁气圈

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摘要

Chorus waves outside the plasmapause influence the Earth's radiation belt dynamics by interacting with energetic electrons via cyclotron and Landau resonance. Recent numerical diffusion experiments indicate that the diffusion process is sensitive to the spatial and temporal scale of variability in the wave-particle interaction, which is reported to be more efficient than that based on the traditional average model. Using Van Allen Probes A and B data from November 2012 to July 2019, the spatial and temporal scale size of chorus waves are calculated by the correlation between the wave amplitudes detected by two satellites with varying spatial separation or time lag. We found that, the chorus wave is incoherent when the spatial extent is greater than 433 km or the time lag lasts ~10 s, which are significantly smaller than that of plasmaspheric hiss. In addition, the spatial correlations of chorus tend to be higher near noon or with lower geomagnetic activity. The temporal correlations of chorus are always statistically near zero, which are not influenced by the location and geomagnetic activity. Our results can help refine the model of the interactions between energetic particles and chorus waves in the radiation belt.
机译:合唱波等离子体层顶之外的影响地球辐射带的动态交互通过回旋加速器高能电子和朗道共振。表明,扩散过程是敏感的空间和时间尺度的变化的波粒相互作用据报道,比基于更有效率传统的平均模型。A和B探测数据从2012年11月至7月2019年,空间和时间尺度的大小合唱波浪计算的相关性之间的波振幅检测到两个卫星在不同空间或分离时间差。时不连贯的空间范围更大比433公里或滞后时间持续~ 10年代明显比小一点的吗plasmaspheric嘶嘶声。合唱的相关性更高的附近中午或较低的地磁活动。合唱总是时间相关性统计上接近于零,这并不影响的位置和地磁活动。结果可以帮助完善的模型高能粒子之间的相互作用合唱波辐射带。

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