首页> 外文期刊>Journal of Plasma Physics >Formation of dipolar vortices and vortex streets due to nonlinearly interacting ion-temperature-gradient-driven modes in dense magnetoplasmas
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Formation of dipolar vortices and vortex streets due to nonlinearly interacting ion-temperature-gradient-driven modes in dense magnetoplasmas

机译:致密磁等离子体中离子温度梯度驱动模式的非线性相互作用导致偶极涡和涡流道的形成

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摘要

Nonlinear equations which govern the dynamics of low-frequency (ci, where is the perturbation frequency of the wave and ci is the ion gyro-frequency), ion-temperature-gradient-driven modes in the presence of equilibrium density, temperature and magnetic field gradients are derived. New set of nonlinear equations are derived. In the nonlinear case, new types of solutions in the form of dipolar vortices and vortex streets are found to exist in dense quantum plasma. These structures are found to be formed on very short spatial scales.
机译:在平衡密度,温度和磁场存在的情况下,控制低频动力学的非线性方程式(ci,其中波的扰动频率,ci是离子陀螺频率),离子温度梯度驱动的模式得出梯度。推导出新的非线性方程组。在非线性情况下,在稠密量子等离子体中发现了以偶极涡旋和涡街形式存在的新型解。发现这些结构是在非常短的空间尺度上形成的。

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