首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Three-dimensional diffusion simulation of outer radiation belt electrons during the 9 October 1990 magnetic storm
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Three-dimensional diffusion simulation of outer radiation belt electrons during the 9 October 1990 magnetic storm

机译:1990年10月9日磁暴期间外部辐射带电子的三维扩散模拟

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Relativistic (>1 MeV) electron flux increases in the Earth's radiation belts are significantly underestimated by models that only include transport and loss processes, suggesting that some additional acceleration process is required. Here we use a new, three-dimensional code that includes radial diffusion and quasi-linear pitch angle and energy diffusion due to chorus waves, including cross terms, to simulate the 9 October 1990 magnetic storm. The diffusion coefficients are activity dependent, and time-dependent boundary conditions are imposed on all six boundary faces, taken from fits to CRRES Medium Electrons A electron data. Although the main phase dropout is not fully captured, the persistent phase space density peaks observed during the recovery phase are well explained, but this requires both chorus wave acceleration and radial diffusion.
机译:仅包括传输和损失过程的模型就大大低估了地球辐射带中相对论(> 1 MeV)电子通量的增加,这表明还需要一些额外的加速过程。在这里,我们使用了一个新的三维代码,其中包括径向扩散和准线性俯仰角以及由合唱波(包括交叉项)引起的能量扩散,来模拟1990年10月9日的磁暴。扩散系数与活度相关,并且随时间变化的边界条件强加于所有六个边界面上,取自CRRES中电子A电子数据。尽管没有完全捕获主相的下降,但是可以很好地解释在恢复阶段观察到的持续相空间密度峰值,但这需要合唱波加速和径向扩散。

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