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Wave energy budget analysis in the Earth’s radiation belts uncovers a missing energy

机译:地球辐射带中的波能预算分析发现了缺失的能量

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摘要

Whistler-mode emissions are important electromagnetic waves pervasive in the Earth’s magnetosphere, where they continuously remove or energize electrons trapped by the geomagnetic field, controlling radiation hazards to satellites and astronauts and the upper-atmosphere ionization or chemical composition. Here, we report an analysis of 10-year Cluster data, statistically evaluating the full wave energy budget in the Earth’s magnetosphere, revealing that a significant fraction of the energy corresponds to hitherto generally neglected very oblique waves. Such waves, with 10 times smaller magnetic power than parallel waves, typically have similar total energy. Moreover, they carry up to 80% of the wave energy involved in wave–particle resonant interactions. It implies that electron heating and precipitation into the atmosphere may have been significantly under/over-valued in past studies considering only conventional quasi-parallel waves. Very oblique waves may turn out to be a crucial agent of energy redistribution in the Earth’s radiation belts, controlled by solar activity.
机译:吹口哨模式辐射是一种遍及地球磁层的重要电磁波,它们不断地清除或激发被地磁场捕获的电子,从而控制对卫星和宇航员的辐射危害以及高层大气的电离或化学成分。在这里,我们报告了对10年簇数据的分析,对地球磁层的全波能量预算进行了统计评估,结果表明,很大一部分能量与迄今为止通常被忽略的非常倾斜的波相对应。这种波的磁功率比平行波小10倍,通常具有相似的总能量。而且,它们携带了高达80%的波粒子共振相互作用所涉及的波能。这意味着在过去的研究中,仅考虑传统的准平行波,电子的加热和向大气中的沉淀可能被大大低估/高估了。斜波很可能是受太阳活动控制的地球辐射带能量重新分配的关键因素。

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