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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Drift-compressional modes generated by inverted plasma distributions in the magnetosphere
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Drift-compressional modes generated by inverted plasma distributions in the magnetosphere

机译:Drift-compressional模式产生的反向等离子体分布的磁场

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[1] The polarization and field-aligned structure of drift-compressional modes and the corresponding plasma instability are studied in a gyrokinetic framework in the axisymmetric model of the magnetosphere with isotropic plasma. The plasma is assumed to be composed of core cold particles and an admixture of hot protons, with an inverted distribution of hot protons. Such plasma experiences a compressional resonance when the wave frequency is equal to an eigenfrequency of the drift-compressional mode. In this resonance, the wave is dominated by the field-aligned and azimuthal magnetic field components and is narrowly localized along the field line at the equator, the same as the plasma to magnetic pressure ratio β. The plasma instability occurs when the temperature diamagnetic drift velocity is less than the magnetic drift velocity or opposite in direction. Furthermore, the narrower the inverted distribution, the higher the instability growth rate and the smaller the value of β required for the instability to occur. The growth rate reaches its highest values when a positive radial temperature gradient and a negative radial density gradient occur simultaneously.
机译:[1]极化和field-aligned结构drift-compressional模式和相应的等离子体不稳定性进行了研究gyrokinetic轴对称模型框架磁气圈的各向同性的等离子体。等离子体被认为是由核心冷粒子和热质子的掺合料,一个倒热质子的分布。等离子体压缩共振时的经历波的频率等于一个本征频率drift-compressional的模式。波是由共振field-aligned和方位磁场组件和勉强的本地化在赤道线,一样的等离子体磁压力比β。不稳定时的温度抗磁性漂移速度小于磁漂移速度或相反的方向。此外,倒越窄分布,越高不稳定增长率和所需的β值越小发生的不稳定。当积极的辐射值最高温度梯度和负径向密度梯度同时发生。

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