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首页> 外文期刊>Annales Geophysicae >Calculating ultra-low-frequency wave power of the compressional magnetic field vs. L and time: multi-spacecraft analysis using the Van Allen probes, THEMIS and GOES
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Calculating ultra-low-frequency wave power of the compressional magnetic field vs. L and time: multi-spacecraft analysis using the Van Allen probes, THEMIS and GOES

机译:计算压缩磁场与L和时间的超低频波功率:使用Van Allen探针,THEMIS和GOES进行多航天器分析

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摘要

Ultra-low-frequency (ULF) pulsations are critical in radial diffusion processes of energetic particles, and the power spectral density (PSD) of these fluctuations is an integral part of the radial diffusion coefficients and of assimilative models of the radiation belts. Using simultaneous measurements from two Geostationary Operational Environmental Satellites (GOES) geosynchronous satellites, three satellites of the Time History of Events and Macroscale Interactions during Substorms (THEMIS) spacecraft constellation and the two Van Allen probes during a 10-day period of intense geomagnetic activity and ULF pulsations of October 2012, we calculate the PSDs of ULF pulsations at different L shells. By following the time history of measurements at different L it is shown that, during this time, ULF wave power is not enhanced uniformly throughout the magnetosphere but instead is mostly enhanced in the outer L shells, close to the magnetopause, and to a lesser extent in the inner magnetosphere, closer to the plasmapause. Furthermore, by using phase differences between two GOES geosynchronous satellite pairs, we estimate the daily-averaged distribution of power at different azimuthal wave numbers. These results can have significant implications in better defining the effect of radial diffusion in the phase space density of energetic particles for different wave numbers or L shell distributions of ULF power.
机译:超低频(ULF)脉动在高能粒子的径向扩散过程中至关重要,这些涨落的功率谱密度(PSD)是径向扩散系数和辐射带同化模型的组成部分。在10天的强烈地磁活动和2012年10月的ULF脉动,我们计算了不同L壳层的ULF脉动的PSD。通过跟踪在不同L处的测量时间历史,可以看出,在此期间,ULF波功率并未在整个磁层中均匀地增强,而是在外L壳层中,靠近磁绝经层并且在较小程度上增强了在内部磁层中,更接近于等离子体暂停。此外,通过使用两个GOES地球同步卫星对之间的相位差,我们估计了不同方位波数下的每日平均功率分布。这些结果对于更好地定义径向扩散对高能粒子的不同波数或L壳分布的高能粒子的相空间密度的影响具有重大意义。

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