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Upconversion of whistler waves by gyrating ion beams in a plasma

机译:通过旋转等离子体中的离子束,对惠斯勒波进行上转换

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A gyrating ion beam, with a ring-shaped distribution in velocity, supports negative energy beam modes near the harmonics of beam gyro-frequency. An investigation of the non-linear interaction of high-frequency whistler waves with the negative energy beam cyclotron mode is made. A non-linear dispersion relation is derived for the coupled modes. It is shown that a gyrating ion-beam frequency upconverts the whistler waves separated by harmonics of beam gyro-frequency. The expression for the growth rate of whistler mode waves has been derived. In Case 1, a high-amplitude whistler wave decays into two lower frequency waves, called a low-frequency mode and a side band of frequency lower than that of pump wave. In Case 2 a high-amplitude whistler wave decays into two lower frequency daughter waves, called the low-frequency mode and whistler waves. Generation mechanism of these waves has application in space and laboratory plasmas.
机译:速度呈环形分布的旋转离子束在离子束回旋频率的谐波附近支持负能量束模。研究了高频惠斯勒波与负能束回旋加速器模式的非线性相互作用。对于耦合模式导出非线性色散关系。结果表明,旋转的离子束频率上转换了由束陀螺频率谐波分离的惠斯勒波。导出了惠斯勒模式波的增长率表达式。在案例1中,一个高振幅的惠斯勒波衰减为两个低频波,称为低频模式,其边带频率低于泵浦波。在案例2中,一个高幅值的惠斯勒波衰减成两个低频子波,称为低频模式波和惠斯勒波。这些波的产生机理已在空间和实验室等离子体中应用。

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