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首页> 外文期刊>Journal of Plasma Physics >Nonlinear stationary waves of the ion-cyclotron-acoustic type: solitons and spiky waveforms
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Nonlinear stationary waves of the ion-cyclotron-acoustic type: solitons and spiky waveforms

机译:离子回旋声非线性类型的固定波:孤子和尖峰波形

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摘要

We develop a fully nonlinear theory of electrostatic stationary waves of the ion-cyclotron-acoustic type propagating in a magnetized plasma. The analysis is facilitated by the existence of two fundamental constants of the motion, namely conservation of momentum flux parallel to the ambient field, and conservation of energy in the direction of propagation of the wave. These lead to the structure of the waves being governed by a first-order differential equation for the longitudinal ion flow speed and, therefore, its, properties are readily analysed. In the case of subsonic wave speeds, compressive soliton wave structures propagate in a cone of obliquity around the magnetic field. If the wave speed is supersonic, the waves are oscillatory in nature. and asymmetric about the compressive and rarefactive phases, essentially because, in the compressive Phase, the flow is driven towards its sonic point, whereas in the rarefactive phase, the flow is driven away from its sonic point. As the initial driver field approaches a critical value, the end point of the compression coincides with the sonic point, with the result that the waveform in the flow speed (and potential) forms a cusp. It is possible that this feature may provide an explanation for the spiky waveforms observed by FAST and other similar satellite observations.
机译:我们开发了在磁化等离子体中传播的离子回旋声型静电驻波的完全非线性理论。运动的两个基本常数的存在促进了分析,即保持与环境场平行的动量通量,以及在波的传播方向上保持能量。这些导致波的结构由纵向离子流速度的一阶微分方程控制,因此,其性质易于分析。在亚音速的情况下,压缩孤波结构在磁场周围的倾斜圆锥中传播。如果波速是超音速的,则这些波本质上是振荡的。并且在压缩和稀疏相之间是不对称的,这主要是因为在压缩相中,流体被驱向其声波点,而在稀疏相中,流体被驱离其声波点。当初始驱动器场接近临界值时,压缩的终点与声波点重合,结果是流速(和电势)中的波形形成尖峰。此功能可能可以解释由FAST和其他类似卫星观测到的尖峰波形。

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