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Three-dimensional test simulations of the outer radiation belt electron dynamics including electron-chorus resonant interactions

机译:外辐射带电子动力学的三维测试模拟,包括电子 - 合唱共振相互作用

摘要

We present results from our three-dimensional (3-D) simulations using the Salammbô electron radiation belt physical model. We have run steady state and dynamic storm test case simulations to study the effect of electron-chorus resonant interactions on the radiation belt electron dynamics. When electron-chorus interactions are introduced in the code outside the plasmasphere, results show that a seed population with a kappa distribution and a characteristic energy of 2 keV is accelerated up to a few MeV in the outer radiation belt. MeV electron fluxes increase by an order of magnitude during high magnetic activity conditions especially near L* ∼ 5 and for equatorial mirroring particles. We have also performed a parametric study of various important parameters to investigate how our results could be influenced by the uncertainty that characterizes their values. Results of this study show that if we consider higher values of the radial diffusion coefficients, different initial states, and different boundary conditions, we always observe a peak in the L* profile of the MeV electrons when electron-chorus interactions are included.
机译:我们介绍了使用Salammbô电子辐射带物理模型进行的三维(3-D)仿真结果。我们已经进行了稳态和动态风暴测试案例模拟,以研究电子-合唱共振相互作用对辐射带电子动力学的影响。当在等离子体层外的代码中引入电子-合唱相互作用时,结果表明,在外部辐射带中,具有κ分布和2 keV特征能量的种子种群被加速至几MeV。在高磁活条件下,尤其是在L *〜5附近以及对于赤道镜面粒子,MeV电子通量会增加一个数量级。我们还对各种重要参数进行了参数研究,以研究表征其值的不确定性如何影响我们的结果。这项研究的结果表明,如果我们考虑较高的径向扩散系数值,不同的初始状态和不同的边界条件,则当包含电子-合唱相互作用时,我们总是会在MeV电子的L *分布图中观察到一个峰值。

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