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Radiation belt electron acceleration induced by gyroresonant interaction with magnetosonic waves

机译:回旋共振与磁声波相互作用引起的辐射带电子加速

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摘要

Using Cluster 4 satellite data, we examine activities of fast magnetosonic (MS) waves in the outer radiation belt near the location L = 4.2 on 28 May 2005. We adopt a Gaussian distribution to fit the observed power spectral density of MS waves and find the fitting wave strength to be 245 pT. We then calculate the bounce-averaged diffusion coefficients and show that these diffusion coefficients are pronounced within a region of pitch angles about 25°-70°. By solving a 2D Fokker-Planck diffusion equation, we simulate the dynamic evolution of the electron phase space density (PSD), and demonstrate that significant increases in electron PSDs at energies of MeVs occur mainly within the aforementioned pitch-angle range over a time scale of several hours. The current results suggest that the interaction between MS waves and electrons could be an important mechanism of electron acceleration in the radiation belt.
机译:使用第4类卫星数据,我们研究了2005年5月28日L = 4.2附近的外辐射带中的快速磁声(MS)波的活动。我们采用高斯分布来拟合观测到的MS波的功率谱密度,并找到拟合波强度为245 pT。然后,我们计算弹跳平均扩散系数,并表明这些扩散系数在大约25°-70°的俯仰角区域内是明显的。通过求解二维Fokker-Planck扩散方程,我们模拟了电子相空间密度(PSD)的动态演化,并证明在MeVs能量下电子PSDs的显着增加主要发生在上述标度角范围内的时间范围内几个小时。目前的结果表明,MS波与电子之间的相互作用可能是辐射带中电子加速的重要机制。

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