首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Nonresonant interactions of electromagnetic ion cyclotron waves with relativistic electrons
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Nonresonant interactions of electromagnetic ion cyclotron waves with relativistic electrons

机译:Nonresonant电磁离子的相互作用以相对论电子回旋波

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摘要

The dynamics of relativistic electrons traveling through a parallel-propagating, monochromatic electromagnetic ion cyclotron (EMIC) wave in the Earth's dipole field are investigated via test particle simulations. Both resonant and nonresonant responses in electron pitch angle are considered, and the differences between the two are highlighted. Nonresonant electrons, with energies below the minimum resonant energy down to hundreds of keV, are scattered stochastically in pitch angle and can be scattered into the atmospheric loss cone. The nonresonant effect is attributed to the spatial edge associated with EMIC wave packets. A condition for effective nonresonant response is also provided. This effect is excluded from current quasi-linear theory and can be a potentially important loss mechanism of relativistic and subrelativistic electrons in the radiation belts.
机译:相对论电子的动力学旅行通过parallel-propagating单色电磁离子回旋波(位的)地球的偶极子场调查通过测试粒子模拟。nonresonant反应电子螺旋角认为,两者之间的差异突出显示。能量低于最低共振能量数以百计的凯文,分散随机在螺旋角,可以分散到大气损失锥。归因于空间与边缘位的波包。nonresonant响应。效果是排除在目前的准线性理论和可能是一个潜在的重要的损失相对论和subrelativistic机制电子辐射带。

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