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Study of Wave-Particle Interactions for Whistler Mode Waves at Oblique Angles by Utilizing the Gyroaveraging Method

机译:陀螺平均法研究斜向吹口哨波的波粒相互作用

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We investigate the properties of whistler mode wave-particle interactions at oblique wave normal angles to the background magnetic field. We find that electromagnetic energy of waves at frequencies below half the electron cyclotron frequency can flow nearly parallel to the ambient magnetic field. We thereby confirm that the gyroaveraging method, which averages the cyclotron motion to the gyrocenter and reduces the simulation from two-dimensional to one-dimensional, is valid for oblique wave-particle interaction. Multiple resonances appear for oblique propagation but not for parallel propagation. We calculate the possible range of resonances with the first-order resonance condition as a function of electron kinetic energy and equatorial pitch angle. To reveal the physical process and the efficiency of electron acceleration by multiple resonances, we assume a simple uniform wave model with constant amplitude and frequency in space and time. We perform test particle simulations with electrons starting at specific equatorial pitch angles and kinetic energies. The simulation results show that multiple resonances contribute to acceleration and pitch angle scattering of energetic electrons. Especially, we find that electrons with energies of a few hundred keV can be accelerated efficiently to a few MeV through the n = 0 Landau resonance.
机译:我们调查与背景磁场倾斜波法向角的惠斯勒模式波粒子相互作用的特性。我们发现,频率低于电子回旋加速器频率一半的波的电磁能可以几乎平行于环境磁场流动。因此,我们确认了回旋平均法,该方法平均回旋加速器到回旋中心的运动并将模拟从二维减少到一维,对于倾斜的波粒相互作用是有效的。出现多个共振以进行倾斜传播,但不发生平行传播。我们计算一阶共振条件下可能的共振范围,该范围是电子动能和赤道俯仰角的函数。为了揭示物理过程和通过多次共振进行电子加速的效率,我们假设一个简单的均匀波模型,该模型在空间和时间上具有恒定的振幅和频率。我们使用从特定赤道俯仰角和动能开始的电子执行测试粒子模拟。仿真结果表明,多重共振有助于高能电子的加速和俯仰角散射。特别是,我们发现,通过n = 0的朗道共振,具有几百keV能量的电子可以有效地加速到几MeV。

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