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Oscillating two stream instability of electromagnetic pump in the ion cyclotron range of frequency in a plasma

机译:在等离子体的离子回旋加速器频率范围内振荡电磁泵的两个流不稳定性

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摘要

An analytical formalism of oscillating two stream instability of a large amplitude electromagnetic wave in the ion cyclotron range of frequency in a plasma is developed. The instability produces electrostatic ion cyclotron sidebands and a driven low frequency mode. The nonlinear coupling arises primarily due to the motion of ions and is strong when the pump frequency is close to ion cyclotron frequency and the oscillatory ion velocity is a significant fraction of acoustic speed. For propagation perpendicular to the ambient magnetic field, the X-mode pump wave produces flute type perturbation with maximum growth rate at some specific wavelengths, which are three to four times larger than the ion Larmor radius. For propagation at oblique angles to ambient magnetic field, the ion cyclotron O-mode, the growth rate increases with the wave number of the low frequency mode.
机译:提出了在等离子回旋加速器频率范围内振荡大振幅电磁波的两个流不稳定性的解析形式学。这种不稳定性会产生静电离子回旋加速器边带和驱动的低频模式。非线性耦合主要是由于离子的运动而引起的,当泵浦频率接近离子回旋加速器频率并且振荡离子速度是声速的很大一部分时,非线性耦合会很强。对于垂直于环境磁场的传播,X模泵浦波会产生长笛类型的扰动,在某些特定波长处具有最大的增长率,该波长比离子拉莫尔半径大三到四倍。对于与环境磁场成斜角的离子回旋加速器O型传播,增长率随低频模式的波数增加而增加。

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