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Effect of low energy electron injection on storm-time evolution of radiation belt energetic electrons: three-dimensional modeling

机译:低能电子注入对辐射带高能电子风暴时间演化的影响:三维建模

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Using the STEERB (storm-time evolution of electron radiation belt) code, we simulate the evolution of radiation belt energetic electrons during geomagnetic storms in the case of low energy electron injection. The STEERB code is used to solve the three-dimensional Fokker-Planck diffusion equation which incorporates wave-particle interaction, Coulomb collisions and radial diffusion. Numerical simulations show that under the short time (~ 1 h) injection of low energy (0.1 MeV≤ E_k ≤ 0.2 MeV) fluxes of radiation belt energetic electrons can increase during the entire storm period. During the main and recovery phases, such injection efficiently enhances chorus-driven acceleration of radiation belt energetic electrons, allowing fluxes of energetic electrons by a factor of 1-2 orders higher than those in the absence of injection. The current results indicate that substorm-induced electron injection must be incorporated to investigate the evolution of radiation belt energetic electrons.
机译:使用STEERB(电子辐射带的风暴时间演化)代码,在低能量电子注入的情况下,我们模拟了地磁风暴期间辐射带高能电子的演化。 STEERB代码用于求解包含波粒相互作用,库仑碰撞和径向扩散的三维Fokker-Planck扩散方程。数值模拟表明,在短时间(〜1 h)内注入低能量(0.1MeV≤E_k≤0.2 MeV)的辐射带高能电子通量在整个暴风雨期间都会增加。在主要阶段和恢复阶段,这种注入有效地增强了由合唱带动的辐射带高能电子的加速,从而使高能电子的通量比没有注入时高出1-2倍。目前的结果表明,必须结合亚暴诱发的电子注入来研究辐射带高能电子的演化。

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