准线性方法估计强扩散和波传导对电子损耗的影响

IF 2.9 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
Ruoxian Zhou, Xiao-Jia Zhang, Anton V. Artemyev, Didier Mourenas, Vassilis Angelopoulos
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引用次数: 0

摘要

通过俯仰角散射进入大气的合唱波驱动电子沉降在地球外辐射带的电子动力学中起着重要作用。这种沉淀的效率高度依赖于损耗锥附近电子共振纬度的波强度,可以直接从低空卫星测量的沉淀和捕获电子通量中推断出来。在本研究中,我们利用统计经验哨声模式合唱波模型和准线性理论模拟了电子损失和场调查(ELFIN)立方体卫星观测到的沉淀电子能谱。干扰期的模拟和观测结果的比较表明,存在非常小的强导管波,仅占时间的5%,但在中纬度地区的窄场排列密度导管内携带6% (23-4 MLT)至60% (4-12 MLT)的总时间平均波能,并产生2020-2022年ELFIN在23-12 MLT记录的总时间积分电子降水的20% (100 keV)至60% (1 MeV)。靠近或在强扩散范围内的。我们的研究表明,在未来研究地球磁层或磁层-电离层-大气耦合过程的电子动力学建模时,除了现有的基于中纬度观测的经验合唱波模型中通常捕获的主波群外,可能需要将这一小部分管道强合唱波作为一个单独的波群包括在内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of Strong Diffusion and Wave Ducting on Electron Losses Estimated by the Quasi-Linear Approach

Effects of Strong Diffusion and Wave Ducting on Electron Losses Estimated by the Quasi-Linear Approach

Chorus wave-driven electron precipitation into the atmosphere through pitch angle scattering plays a fundamental role in electron dynamics in the Earth's outer radiation belt. The efficiency of this precipitation is highly dependent on the wave intensity at the latitudes of resonance with electrons near the loss cone and can be directly inferred from measurements of precipitating and trapped electron fluxes measured by low-altitude satellites. In this study, we utilized statistical empirical whistler-mode chorus wave models and quasi-linear theory to simulate the precipitating electron spectrum observed by the Electron Losses and Fields INvestigation (ELFIN) CubeSats. Comparisons between simulations and observations during disturbed periods suggest the presence of a very small population of intense ducted waves, present only 5% of the time but carrying 6% (at 23-4 MLT) to 60% (at 4-12 MLT) of the total time-averaged wave power inside narrow field-aligned density ducts up to middle latitudes, and producing 20% (at 100 keV) to 60% (at 1 MeV) of the total time-integrated electron precipitation recorded by ELFIN at 23-12 MLT in 2020–2022, near or within the strong diffusion regime. Our study suggests that when modeling electron dynamics in future studies of Earth's magnetosphere or magnetosphere-ionosphere-atmosphere coupling processes, this small fraction of ducted intense chorus waves may need to be included as a separate wave population, in addition to the main wave populations typically captured in the existing empirical chorus wave models based on observations mainly performed at moderate latitudes.

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来源期刊
Journal of Geophysical Research: Space Physics
Journal of Geophysical Research: Space Physics Earth and Planetary Sciences-Geophysics
CiteScore
5.30
自引率
35.70%
发文量
570
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