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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Precipitation of highly energetic protons by helium branch electromagnetic ion cyclotron triggered emissions
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Precipitation of highly energetic protons by helium branch electromagnetic ion cyclotron triggered emissions

机译:降水的高能质子氦分支电磁离子回旋触发排放

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摘要

In the equatorial region of the Earth's inner magnetosphere, the electromagnetic ion cyclotron (EMIC) triggered emissions are generated through interaction with energetic protons. We investigate the generation process of the EMIC triggered emissions in the He~+ branch and associated precipitation of the energetic protons using a one-dimensional hybrid simulation with a cylindrical parabolic magnetic geometry. The simulation results show a good agreement with the nonlinear wave growth theory. As the electron density becomes higher as in the plasmasphere or the plasmaplume, the wave amplitude thresholds for both H~+ and He~+ band triggered emissions become lower and their nonlinear growth rates become higher. The higher hot proton density also makes the thresholds lower. While the H~+ branch triggered emissions interact with a few keV protons, the He~+ branch triggered emissions interact with more energetic protons of a few hundred keV with a larger nonlinear growth rate.
机译:赤道地区的地球的内部磁气圈,电磁离子回旋(位)触发生成排放与精力充沛的质子。位的的生成过程进行调查在他~ +分支和引发了排放高能质子的降水有关用一维混合模拟圆柱抛物面磁性几何。仿真结果表明良好的协议非线性波的增长理论。等离子体层或密度变得更高plasmaplume,波振幅阈值对H ~ +和他~ +带触发排放成为低及其非线性增长变得更高。使阈值更低。排放与几个keV触发质子,他~ +分支触发排放与更多的高能质子数几百keV较大的非线性增长。

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