地球内磁层中电磁离子回旋波对环电流质子的扩散和非线性散射

IF 2.9 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
Q. Ma, W. Li, J. Bortnik, M. Hanzelka, L. Gan, A. V. Artemyev, X.-C. Shen
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引用次数: 0

摘要

我们用测试粒子模拟的方法评估了地球内磁层中电磁离子回旋波对环电流质子的扩散和非线性散射。在等离子体圈内外通常可以观测到位相波,其振幅从100pt到几个nT不等。场向位相波可以散射1kv - 1mev的质子,通过一阶回旋共振与位相波反向流动。通过对质子赤道俯俯角沿场线变化的分析,我们的模拟揭示了典型的相互作用特征,包括小波幅时的拟线性扩散、中大俯俯角时的相捕获和聚束、小俯俯角时的反常相捕获和正相聚束、俯俯角和共振区外能量时的非共振散射。在100 pT ~ 5 nT的不同波幅下,我们比较了拟线性和测试粒子模拟、扩散散射和平流效应对质子赤道俯俯角变化的模拟结果。对于L = 5的单色he波段位波,振幅小于500 pT的质子与位波的相互作用可以描述为扩散过程,并可以用拟线性理论量化;非线性相互作用和平流效应对于大于1 nT的波幅变得重要。位源波与环电流质子之间的相互作用类似于先前研究中描述的哨声模式合唱波与辐射带电子之间的相互作用,尽管准线性扩散适用性的波幅阈值在数量上存在差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffusive and Nonlinear Scattering of Ring Current Protons by Electromagnetic Ion Cyclotron Waves in the Earth's Inner Magnetosphere

We evaluate the diffusive and nonlinear scattering of ring current protons by electromagnetic ion cyclotron (EMIC) waves in the Earth's inner magnetosphere using test particle simulations. EMIC waves are commonly observed inside and outside the plasmasphere with wave amplitudes ranging from 100 pT to several nT. Field-aligned EMIC waves can scatter 1 keV–1 MeV protons counter-streaming with respect to the waves through first order cyclotron resonance. Through the analyses of the proton equatorial pitch angle variations along the field line, our simulations reveal the typical interaction features including quasilinear diffusion for small wave amplitudes, phase trapping and bunching at intermediate and large pitch angles, anomalous phase trapping and positive phase bunching at small pitch angles, and non-resonant scattering at pitch angles and energies outside the resonance regime. Using different wave amplitudes from 100 pT to 5 nT, we compared the modeling results of proton equatorial pitch angle variations between quasilinear and test particle simulations, and between diffusive scattering and advective effects. For monochromatic He-band EMIC waves at L = 5, the interaction between protons and EMIC waves with amplitudes below 500 pT could be described as a diffusive process and quantified by quasilinear theory; nonlinear interactions and advection effects become important for wave amplitudes larger than 1 nT. The interactions between EMIC waves and ring current protons are analogous to the interactions between whistler-mode chorus waves and radiation belt electrons described in previous studies, despite the quantitative differences in the wave amplitude threshold of quasilinear diffusion applicability.

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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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