物理
回转半径
湍流
朗道阻尼
半径
扩散
计算物理学
波传播
波长
等离子体
机械
光学
量子力学
计算机安全
计算机科学
标识
DOI:10.1017/s0022377800006073
摘要
The propagation of low-frequency, large-scale (compared to the ion Larmor frequency Ω i and radius R i ), oblique Alfvén waves in a turbulent plasma is investigated in the framework of kinetic theory. The turbulent field is the statistical average of one-dimensional ion-sound waves of very high frequency and short wavelength (ω ≫ Ω i R e ≫ λ). In the absence of resonant particle effects, and to first order in a finite Larmor radius expansion, it is shown that the turbulence can lead either to spatial diffusion (damping) or anti-diffusion (growth), with Bohm scaling, of the low frequency wave. Finite Larmor radius and frequency effects in the propagation of oblique Alfvén waves are simultaneously obtained for arbitrary β plasma; the results can easily be generalized, merely by deforming certain integration contours, to obtain the corresponding Landau decrement.
科研通智能强力驱动
Strongly Powered by AbleSci AI