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Formation of Butterfly Pitch Angle Distributions of Relativistic Electrons in the Outer Radiation BeltWith a Monochromatic Pc5Wave

机译:单色PC5波和外辐射带中相对论电子的蝴蝶桨距角分布的形成

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摘要

Radial transport of relativistic electrons in the inner magnetosphere has been considered one of the acceleration mechanisms of the outer radiation belt electrons and can be driven by the drift resonance with Pc5 ultralow-frequency waves. In this study, we focus on the pitch angle dependences of the radial transport and investigate the pitch angle distributions (PADs) of the relativistic electrons after interaction with a monochromatic Pc5 wave, using two simulation models of the inner magnetosphere: Geomagnetic Environment Modeling System for Integrated Studies (GEMSIS)-Ring Current and GEMSIS-Radiation Belt models. The results show that butterfly-like PADs (two peaks in small pitch angles) are produced at a fixed radial distance (L-shell) and energy, where the electrons with small pitch angles satisfy the resonance condition. The radial range and timescale of the butterfly PAD appearance correspond to the maximum radial transport of the electron (i.e., resonant width) and its oscillation period in the radial direction, respectively. We analytically derive the resonant width and oscillation period of relativistic electrons interacting with a monochromatic Pc5 wave, assuming conservation of first and second adiabatic invariants, and compare them with the simulation result. The results show that electrons with small equatorial pitch angles at a fixed magnetic moment can interact with a monochromatic Pc5 wave in a wider L-shell range than perpendicular electrons due to the pitch angle changes, in the course of the radial transport.
机译:内磁层中相对论电子的径向传输已被认为是外辐射带电子的加速机构之一,并且可以由PC5超级频率波的漂移谐振驱动。在这项研究中,我们专注于径向传输的俯仰角度依赖性,并使用内磁层的两个模拟模型,研究与单色PC5波相互作用后相互作用电子的俯仰角分布(焊盘):地磁环境建模系统综合研究(GEMSIS)轴流电流和GEMSIS-辐射带模型。结果表明,在固定的径向距离(L-壳)和能量下产生蝴蝶状焊盘(小间距角度的两个峰),其中具有小间距角度的电子满足谐振条件。蝶形垫外观的径向范围和时间尺度对应于径向上的电子(即谐振宽度)的最大径向传输及其振荡周期。我们分析了与单色PC5波相互作用的相对论电子的谐振宽度和振荡周期,假设保守第一和第二绝热不变,并将它们与模拟结果进行比较。结果表明,在径向传输的过程中,固定磁矩处具有小赤道间距角度的电子在宽的L-壳范围内与较宽的L-壳体的单色PC5波相互作用。

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  • 作者单位

    Graduate School of Science Nagoya University Nagoya Japan;

    Department of Earth and Planetary Science Graduate School of Science University of Tokyo Tokyo Japan;

    Graduate School of Science Nagoya University Nagoya Japan;

    Department of Earth and Planetary Science Graduate School of Science University of Tokyo Tokyo Japan;

    Institute for Space-Earth Environmental Research Nagoya University Nagoya Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 空间物理;
  • 关键词

    electrons; inner; transport;

    机译:电子;内部;运输;

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