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Modeling the wave normal distribution of chorus waves

机译:合唱的浪潮正态分布进行建模波

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The propagation and attenuation characteristics of lower band and upper band chorus waves are investigated by ray tracing, and the evaluation of Landau damping based on an empirical suprathermal electron model derived from Time History of Events and Macroscale Interactions during Substorms (THEMIS) data. The rate of Landau damping is found to increase at larger L-shell, for more oblique wave normal angles, and for higher geomagnetic activity. Damping is also larger on the nightside than on the dayside and is more pronounced in the upper band than in the lower band. These features can account for the statistical pattern of chorus waves observed away from the equatorial source region. A physical model of the wave normal angle distribution along a field line is presented, which provides insight on how the wave normal angle distribution varies as chorus waves propagate away from the equatorial source region. Our modeling shows that wave emissions at low latitudes (λ a‰? 30°) come predominately from the equatorial source at the same L-shell and that their wave normal angles increase with increasing latitude due to wave refraction caused by magnetic gradients and curvature. However, at high latitudes (λ a‰? 30°), the wave normal angle distribution along a particular field line is affected by chorus waves that arrive from an equatorial source at lower L because of significant cross-L propagation. As a consequence, the lower band wave normal angle tends to decrease with increasing latitudes, while the upper band wave normal angle can either increase or decrease depending on the equatorial source at lower L. The effect of cross-L propagation might also explain why observed wave normal angle distribution tends to become more field-aligned at high latitudes. Interestingly, the upper band chorus at such high latitudes originates from lower band waves originating near the equator at lower L. A global model of wave normal variation along a field line constructed in this study is not currently available from observations but is nonetheless critically important for evaluating bounce-averaged diffusion coefficients for future radiation belt modeling. Key Points The propagation and attenuation characteristics of chorus waves are presented Chorus wave normal variations along field lines are modeled Cross L-shell propagation is significant for chorus waves at high latitudes
机译:的传播和衰减特性低带和上乐队合唱波射线跟踪调查和评估基于实证的朗道阻尼来自时间suprathermal电子模型的历史事件和宏观尺度相互作用在亚暴(裁判)数据。朗道阻尼被发现在更大的增加l层,斜波正常的角度,更高的地磁活动。大比的光面和在阴面上带更明显比吗较低的乐队。合唱的统计模式波观测从赤道地区来源。波正常角分布的模型场线,它提供了洞察力波正常角分布各不相同作为合唱波传播距离赤道地区来源。波排放在低纬度(λ‰吗?主要从赤道的来源相同的l层和波正常角度随着纬度的增加由于波折射引起的磁梯度和曲率。30°),波沿着正常的角分布特定领域是受到合唱波的影响来自一个赤道来源较低的L因为重大cross-L传播。因此,较低的带波正常的角往往随着纬度的降低,而上部带波正常角可以增加或减少取决于赤道源低l . cross-L的效果传播也可能解释观察到的波往往会变得更加正常的角分布field-aligned高纬度地区。上乐队合唱团在高纬度地区源于低带波原始附近赤道低l .波的全局模型沿着磁场线构造正常变异在这项研究中目前没有观察,但尽管如此严重重要的评估bounce-averaged为未来的辐射带扩散系数建模。合唱波的衰减特征提出了合唱波正常变化电场线建模交叉l层传播合唱波高纬度地区重要吗

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