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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Whistler mode wave growth and propagation in the prenoon magnetosphere
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Whistler mode wave growth and propagation in the prenoon magnetosphere

机译:惠斯勒波增长和传播模式prenoon磁气圈

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Pitch angle scattering of electrons can limit the stably trapped particle flux in the magnetosphere and precipitate energetic electrons into the ionosphere. Whistler mode waves generated by a temperature anisotropy can mediate this pitch angle scattering over a wide range of radial distances and latitudes, but in order to correctly predict the phase space diffusion, it is important to characterize the whistler mode wave distributions that result from the instability. We use previously published observations of number density, pitch angle anisotropy, and phase space density to model the plasma in the quiet prenoon magnetosphere (defined as periods when AE<100 nT). We investigate the global propagation and growth of whistler mode waves by studying millions of growing raypaths and demonstrate that the wave distribution at any one location is a superposition of many waves at different points along their trajectories and with different histories. We show that for observed electron plasma properties, very few raypaths undergo magnetospheric reflection; most rays grow and decay within 30 degrees of the magnetic equator. The frequency range of the wave distribution at large L can be adequately described by the solutions of the local dispersion relation, but the range of wave normal angle is different. The wave distribution is asymmetric with respect to the wave normal angle. The numerical results suggest that it is important to determine the variation of magnetospheric parameters as a function of latitude, as well as local time and L-shell.
机译:螺旋角散射的电子可以限制稳定被困在磁层粒子通量和沉淀高能电子电离层。温度各向异性可以调解角在范围广泛的径向散射距离和纬度,但为了正确地预测相空间扩散,它惠斯勒模式特征是重要的波分布的结果不稳定。观察数密度,螺距角各向异性和相空间密度模型等离子体在安静prenoon磁场(定义为时期AE < 100元)。调查的全球传播和发展惠斯勒波通过研究数以百万计的方式波射线路径和演示在任何一个位置是一个分布在不同的点许多波的叠加沿着自己的轨迹和不同历史。等离子体特性,很少的射线路径进行磁性层的反射;腐烂在磁赤道的30度。波的频率范围分布L可以充分描述解决当地的色散关系,但是波正常角的范围是不同的。波分布是不对称的对正常的角。建议是很重要的决定作为一个变异的磁性层的参数纬度的函数,以及当地时间l层。

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