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首页> 外文期刊>Physics of plasmas >Three-dimensional electromagnetic strong turbulence: Dependence of the statistics and dynamics of strong turbulence on the electron to ion temperature ratio
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Three-dimensional electromagnetic strong turbulence: Dependence of the statistics and dynamics of strong turbulence on the electron to ion temperature ratio

机译:三维电磁强湍流:强湍流的统计和动力学对电子离子温度比的依赖

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摘要

The temperature ratio T _i/T _e of ions to electrons affects both the ion-damping rate and the ion-acoustic speed in plasmas. The effects of changing the ion-damping rate and ion-acoustic speed are investigated for electrostatic strong turbulence and electromagnetic strong turbulence in three dimensions. When ion damping is strong, density wells relax in place and act as nucleation sites for the formation of new wave packets. In this case, the density perturbations are primarily density wells supported by the ponderomotive force. For weak ion damping, corresponding to low T _i/T _e, ion-acoustic waves are launched radially outwards when wave packets dissipate at burnout, thereby increasing the level of density perturbations in the system and thus raising the level of scattering of Langmuir waves off density perturbations. Density wells no longer relax in place so renucleation at recent collapse sites no longer occurs, instead wave packets form in background low density regions, such as superpositions of troughs of propagating ion-acoustic waves. This transition is found to occur at T _i/T _e ≈ 0.1. The change in behavior with T _i/T _e is shown to change the bulk statistical properties, scaling behavior, spectra, and field statistics of strong turbulence. For T _i/T _e ? 0.1, the electrostatic results approach the predictions of the two-component model of Robinson and Newman, and good agreement is found for T _i/T _e ? 0.15.
机译:离子与电子的温度比T _i / T _e影响等离子体中的离子阻尼率和离子声速。在三个方面研究了改变离子阻尼率和离子声速对静电强湍流和电磁强湍流的影响。当离子阻尼很强时,密度阱就位放松并充当形成新波包的成核位点。在这种情况下,密度扰动主要是由质动力所支撑的密度井。对于弱离子阻尼,对应于低T _i / T _e,当波包在燃尽时消散时,离子声波会沿径向向外发射,从而增加了系统中的密度扰动水平,从而提高了朗缪尔波散射的水平密度扰动。密度井不再在原位松弛,因此不再在最近的坍塌位置发生核化,而是在背景低密度区域形成波包,例如传播的离子声波波谷的叠加。发现该转变发生在T _i / T _e≈0.1。随T _i / T _e的行为变化显示出改变了强湍流的整体统计特性,缩放行为,光谱和场统计。对于T _i / T _e? 0.1时,静电结果接近Robinson和Newman两组分模型的预测值,并且T _i / T _e≥。 0.15。

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