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Low-frequency instabilities locally enhanced by parallel flow velocity shears in magnetized plasmas

机译:磁化等离子体中平行流速剪切在局部增强了低频不稳定性

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Three-dimensional electrostatic particle simulations are performed in order to investigate the effects of ion flow parallel to magnetic-field lines and their velocity shears oil low-frequency plasma instabilities in detail. In the case where the ion drift, speed is so small that the low-frequency instabilities cannot take place, the ion-acoustic wave is destabilized by introducing the ion-flow velocity shear. The ion-acoustic wave is locally destabilized in the large velocity shear region. On the other hand, the ion-cyclotron instability is also destabilized when the ion drift speed exceeds a certain threshold. The flow velocity shear enhances not only the fundamental mode but also the high harmonic modes. As a result. the spiky fluctuations in the time domain are locally observed in the velocity Shear region, which are caused by the simultaneous existence of several coherent ion-cyclotron harmonics.
机译:进行了三维静电粒子模拟,以详细研究离子流平行于磁场线的影响及其速度,从而剪切了低频等离子体的不稳定性。在离子漂移的情况下,速度太小以至于不能发生低频不稳定性,通过引入离子流速剪切,使离子声波不稳定。离子声波在大速度剪切区中局部不稳定。另一方面,当离子漂移速度超过某个阈值时,离子回旋加速器的不稳定性也不稳定。流速剪切不仅增强了基本模式,而且增强了高次谐波模式。结果是。时域中的尖峰波动是在速度剪切区域中局部观察到的,这是由于同时存在多个相干离子回旋加速器谐波引起的。

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