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Wave-particle interactions in the equatorial source region of whistler-mode emissions

机译:在赤道波粒相互作用whistler-mode源地区的排放

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Wave-particle interactions can play a key role in the process of transfer of energy between different electron populations in the outer Van Allen radiation belt. We present a case study of wave-particle interactions in the equatorial source region of whistler-mode emissions. We select measurements of the Cluster spacecraft when these emissions are observed in the form of random hiss with only occasional discrete chorus wave packets, and where the wave propagation properties are very similar to previously analyzed cases of whistler-mode chorus. We observe a positive divergence of the Poynting flux at minima of the magnetic field modulus along the magnetic field lines, indicating the central position of the source. In this region we perform a linear stability analysis based on the locally measured electron phase space densities. We find two unstable electron populations. The first of them consists of energy-dispersed and highly anisotropic injected electrons at energies of a few hundreds eV to a few keV, with the perpendicular temperature more than 10 times higher than the parallel temperature with respect to the magnetic field line. Another unstable population is formed by trapped electrons at energies above 10 keV. We show that the injected electrons at lower energies can be responsible for a part of the waves that propagate obliquely at frequencies above one half of the electron cyclotron frequency. Our model of the trapped electrons at higher energies gives insufficient growth of the waves below one half of the electron cyclotron frequency and a nonlinear generation mechanism might be necessary to explain their presence even in this simple case.
机译:波粒相互作用可以发挥关键作用之间的能量转移过程不同的电子数量外范艾伦辐射带。在赤道波粒相互作用whistler-mode源地区的排放。选择集群航天器的测量当这些排放的形式随机的嘶嘶声,只有偶尔的离散合唱波包,和波传播的地方属性是非常相似分析病例whistler-mode合唱。观察一个积极的能流密度的差异通量在磁场模量的最小值沿着磁场线,表示中心位置的来源。执行一个线性稳定性分析的基础上本地测量电子相空间密度。我们发现两个不稳定的电子数量。首先由energy-dispersed和高度各向异性的注入电子的能量几百eV的几个keV的垂直温度10倍以上温度高于平行与尊重磁场线。人口是由捕获的电子以上10 keV能量。可以负责任的电子能量更低间接传播的波的一部分一半以上频率的电子回旋频率。电子在更高的能量给不足海浪的增长的一半以下电子回旋频率和非线性产生机制可能是必要的即使在这个简单的例子中解释了他们的存在。

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