首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Parametric Dependence of the Formation of Electron Butterfly Pitch Angle Distribution Driven by Magnetosonic Waves
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Parametric Dependence of the Formation of Electron Butterfly Pitch Angle Distribution Driven by Magnetosonic Waves

机译:参数的依赖关系形成的电子蝴蝶由螺旋角分布Magnetosonic波

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摘要

Using the full relativistic test particle (TP) simulation code, we investigate the parametric dependence of electron scattering and phase space density evolution driven by magnetosonic (MS) waves at L = 4.5 both inside and outside the plasmapause. The scattering effects caused by Landau resonance, bounce resonance, and the transit-time effect are all involved in the study. The net scattering effects are evaluated in the form of diffusion coefficients with different combinations of MS wave parameters, such as frequency bandwidth and wave normal angle, and ambient plasma density. The results demonstrate that (1) Landau resonance and the transit-time effect dominate the electron scattering inside and outside the plasmapause, respectively, while both are modulated by bounce resonant scattering; (2) bounce resonant scattering becomes more important with narrowband MS waves; (3) electron scattering induced by MS waves is highly sensitive to wave normal angle. The temporal phase space density (PSD) evolution obtained from 2-D kinetic Fokker-Planck simulations shows that MS waves with larger wave normal angles are more likely to generate electron butterfly pitch angle distributions (PADs) for hundreds of keV electrons outside the plasmapause. Our study suggests that the electron butterfly distribution has important implications for revealing the combined scattering of MS wave-particle interactions, and the combination of the multiple scattering mechanisms should be carefully incorporated in future global modeling of radiation belt dynamics.
机译:使用完整的相对论性粒子测试(TP)模拟代码,我们调查参数依赖电子散射和相空间密度进化由magnetosonic(女士)波在L = 4.5内外的等离子体层顶。朗道共振,反弹共振,渡越时间效应都参与了研究。扩散系数的形式女士的不同组合波参数,如频率带宽和波正常角,和周围的等离子体密度。证明(1)和朗道共鸣电子渡越时间效应主导内外散射等离子体层顶,分别,而两者都是调制的反弹共振散射;散射与窄带变得更加重要女士波;海浪波正常角高度敏感。时间相空间密度(PSD)进化从二维动力学福克尔普朗克获得模拟表明,波女士与更大的波正常的角度更容易产生电子蝴蝶节距角分布(垫)数百keV电子外等离子体层顶。蝴蝶分布有重要意义揭示复合散射的女士波粒相互作用,组合的多次散射机制小心翼翼地纳入未来全球建模辐射带的动力学。

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