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The magnetized electron-acoustic instability driven by a warm, field-aligned electron beam

机译:温暖的场对准电子束驱动磁化的电子声不稳定性

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The electron-acoustic instability in a magnetized plasma having three electron components, one of which is a field-aligned beam of intermediate temperature, is investigated. When the plasma frequency of the cool electrons exceeds the electron gyrofrequency, the electron-acoustic instability "bifurcates" at sufficiently large propagation angles with respect to the magnetic field to yield an obliquely propagating, low-frequency electron-acoustic instability and a higher frequency cyclotron-sound instability. Each of these instabilities retains certain wave features of its progenitor, the quasiparallel electron-acoustic instability, but displays also new magnetic qualities through its dependence on the electron gyrofrequency. The obliquely propagating electron-acoustic instability requires a lower threshold beam speed for its excitation than does the cyclotron-sound instability, and for low to intermediate beam speeds has the higher maximum growth rate. When the plasma is sufficiently strongly magnetized that the plasma frequency of the cool electrons is less than the electron gyrofrequency, the only instability in the electron-acoustic frequency range is the strongly magnetized electron-acoustic instability. Its growth rate and real frequency exhibit a monotonic decrease with wave propagation angle and it grows at small to intermediate wave numbers where its parallel phase speed is approximately constant. The relevance of the results to the interpretation of cusp auroral hiss and auroral broadband electrostatic noise is briefly discussed. (C) 2004 American Institute of Physics.
机译:研究了具有三个电子成分的磁化等离子体中的电子声不稳定性,其中三个是中温的场取向束。当冷电子的等离子体频率超过电子陀螺频率时,电子声不稳定性会相对于磁场以足够大的传播角度“分叉”,从而产生倾斜传播的低频电子声不稳定性和更高频率的回旋加速器声音不稳定。这些不稳定性都保留了其祖先的某些波动特征,即准平行电子-声不稳定性,但由于其对电子陀螺频率的依赖性,也显示出新的磁性。倾斜传播的电子声不稳定性需要比回旋加速器声不稳定性更低的阈值束速度用于激发,而对于中低的束速度则具有更高的最大生长速率。当等离子体被足够强地磁化以致冷电子的等离子体频率小于电子陀螺频率时,在电子声频率范围内唯一的不稳定性是强磁化的电子声不稳定性。它的增长率和实际频率随波传播角而呈单调递减,并且以小至中波数增长,而其平行相速度大致恒定。简要讨论了结果与尖峰极光嘶嘶声和极光宽带静电噪声的解释的相关性。 (C)2004美国物理研究所。

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