首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Combined scattering loss of radiation belt relativistic electrons by simultaneous three-band EMIC waves: A case study
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Combined scattering loss of radiation belt relativistic electrons by simultaneous three-band EMIC waves: A case study

机译:同步三波段EMIC波辐射带相对论电子的联合散射损失:案例研究

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摘要

Multiband electromagnetic ion cyclotron (EMIC) waves can drive efficient scattering loss of radiation belt relativistic electrons. However, it is statistically uncommon to capture the three bands of EMIC waves concurrently. Utilizing data fromthe Electric and Magnetic Field Instrument Suite and Integrated Science magnetometer onboard Van Allen Probe A, we report the simultaneous presence of three (H~+, He~+, and O~+) emission bands in an EMIC wave event, which provides an opportunity to look into the combined scattering effect of all EMIC emissions and the relative roles of each band in diffusing radiation belt relativistic electrons under realistic circumstances. Our quantitative results, obtained by quasi-linear diffusion rate computations and 1-D pure pitch angle diffusion simulations, demonstrate that the combined resonant scattering by the simultaneous three-band EMIC waves is overall dominated by He~+ band wave diffusion, mainly due to its dominance over the wave power (the mean wave amplitudes are approximately 0.4 nT, 1.6 nT, and 0.15 nT for H~+, He~+, and O~+ bands, respectively). Near the loss cone, while 2–3MeV electrons undergo pitch angle scattering at a rate of the order of 10~(-6)–10~(-5) s~(-1), 5–10MeV electrons can be diffused more efficiently at a rate of the order of 10~(-3)–10~(-2) s~(-1), which approaches the strong diffusion level and results in a moderately or heavily filled loss cone for the atmospheric loss. The corresponding electron loss timescales (i.e., lifetimes) vary from several days at the energies of ~2MeV to less than 1 h at ~10MeV. This case study indicates the leading contribution of He~+ band waves to radiation belt relativistic electron losses during the coexistence of three EMIC wave bands and suggests that the roles of different EMIC wave bands in the relativistic electron dynamics should be carefully incorporated in future modeling efforts.
机译:多波段电磁离子回旋加速器(EMIC)波可以驱动辐射带相对论电子的有效散射损耗。但是,从统计上讲,同时捕获EMIC波的三个频带并不常见。利用Van Allen Probe A上的电场和磁场仪器套件和Integrated Science磁力计的数据,我们报告了在EMIC波事件中同时存在三个(H〜+,He〜+和O〜+)发射带,从而提供了在现实情况下,有机会研究所有EMIC发射的综合散射效应以及每个频带在扩散辐射带相对论电子中的相对作用。通过准线性扩散率计算和一维纯螺距角扩散模拟获得的定量结果表明,同时三频带EMIC波的组合共振散射总体上受He〜+频带波扩散支配,这主要是由于其在波功率上的优势(H〜+,He〜+和O〜+波段的平均波幅分别约为0.4 nT,1.6 nT和0.15 nT)。在损耗锥附近,虽然2–3MeV电子以10〜(-6)–10〜(-5)s〜(-1)的量级经历俯仰角散射,但5–10MeV电子可以更有效地扩散以大约10〜(-3)–10〜(-2)s〜(-1)的速率,接近强扩散水平并导致中等或严重填充的大气损耗损失锥。相应的电子损失时间尺度(即寿命)从〜2MeV能量的几天到〜10MeV的少于1小时不等。该案例研究表明,在三个EMIC波段共存期间,He〜+波段对辐射带相对论电子损耗的主要贡献,并建议在未来的建模工作中应仔细考虑不同EMIC波段在相对论电子动力学中的作用。 。

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