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Roles of whistler mode waves and magnetosonic waves in changing the outer radiation belt and the slot region

机译:惠斯勒模式波和磁性波在改变外辐射带和槽区域的角色

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摘要

Using the Van Allen Probe long-term (2013-2015) observations and quasi-linear simulations of wave-particle interactions, we examine the combined or competing effects of whistler mode waves (chorus or hiss) and magnetosonic (MS) waves on energetic (<0.5 MeV) and relativistic (>0.5 MeV) electrons inside and outside the plasmasphere. Although whistler mode chorus waves and MS waves can singly or jointly accelerate electrons from the hundreds of keV energy to the MeV energy in the low-density trough, most of the relativistic electron enhancement events are best correlated with the chorus wave emissions outside the plasmapause. Inside the plasmasphere, intense plasmaspheric hiss can cause the net loss of relativistic electrons via persistent pitch angle scattering, regardless of whether MS waves were present or not. The intense hiss waves not only create the energy-dependent electron slot region but also remove a lot of the outer radiation belt electrons when the expanding dayside plasmasphere frequently covers the outer zone. Since whistler mode waves (chorus or hiss) can resonate with more electrons than MS waves, they play dominant roles in changing the outer radiation belt and the slot region. However, MS waves can accelerate the energetic electrons below 400 keV and weaken their loss inside the plasmapause. Thus, MS waves and plasmaspheric hiss generate different competing effects on energetic and relativistic electrons in the high-density plasmasphere.
机译:使用Van Allen探测器长期(2013-2015)的波粒相互作用的观察和准线性模拟,我们研究了惠斯勒模式波(合唱或嘶嘶声)和磁性音量(MS)波在精力充沛的组合或竞争效果( <0.5 meV)和相位内外的相对(> 0.5mev)电子。尽管吹口哨模式合唱波和MS波可以单独或共同加速来自数百keV能量的电子,但在低密度槽中的MEV能量中,大多数相对论的电子增强事件与差管外部外部的合唱波发射最佳相关。在PlasmaSphere内,不管是否存在MS波,强烈的散体嘶嘶声会导致持续俯仰角散射的相对论电子的净损失。当扩张的天柱散布频繁覆盖外部区域时,激烈的HISS波不仅创造了能量依赖的电子槽区域,而且在膨胀时覆盖了大量外辐射带电子。由于惠斯勒模式波(合唱或嘶嘶声)可以与比MS波的更多电子共振,因此在改变外辐射带和槽区域时起着主导作用。然而,MS波可以加速低于400 keV的能量电子,并削弱了阻滞的损失。因此,MS波和PlasMasbheric Hiss在高密度覆膜中产生了对能量和相对论电子的不同竞争效果。

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  • 作者单位

    School of Space and Environment Beihang University Beijing China;

    School of Space and Environment Beihang University Beijing China;

    School of Space and Environment Beihang University Beijing China;

    School of Space and Environment Beihang University Beijing China;

    Laboratory for Atmospheric and Space Physics University of Colorado Boulder Boulder Colorado USA;

    Laboratory for Atmospheric and Space Physics University of Colorado Boulder Boulder Colorado USA;

    Space Sciences and Applications Group Los Alamos National Laboratory Los Alamos New Mexico USA;

    Institue for the Study of Earth Oceans and Space University of New Hampshire Durham New Hampshire USA;

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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

    magnetosonic; waves in changing; radiation;

    机译:磁音;在变化中的波浪;辐射;

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