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回旋动理学等离子体湍流中的非线性相位混合和熵的相空间级联

Nonlinear phase mixing and phase-space cascade of entropy in gyrokinetic plasma turbulence.

作者信息

Tatsuno T, Dorland W, Schekochihin A A, Plunk G G, Barnes M, Cowley S C, Howes G G

机构信息

Department of Physics, IREAP and CSCAMM, University of Maryland, College Park, Maryland 20742, USA.

出版信息

Phys Rev Lett. 2009 Jul 3;103(1):015003. doi: 10.1103/PhysRevLett.103.015003. Epub 2009 Jun 30.

Abstract

Electrostatic turbulence in weakly collisional, magnetized plasma can be interpreted as a cascade of entropy in phase space, which is proposed as a universal mechanism for dissipation of energy in magnetized plasma turbulence. When the nonlinear decorrelation time at the scale of the thermal Larmor radius is shorter than the collision time, a broad spectrum of fluctuations at sub-Larmor scales is numerically found in velocity and position space, with theoretically predicted scalings. The results are important because they identify what is probably a universal Kolmogorov-like regime for kinetic turbulence; and because any physical process that produces fluctuations of the gyrophase-independent part of the distribution function may, via the entropy cascade, result in turbulent heating at a rate that increases with the fluctuation amplitude, but is independent of the collision frequency.

摘要

弱碰撞、磁化等离子体中的静电湍流可被解释为相空间中的熵级联,这被认为是磁化等离子体湍流中能量耗散的一种普遍机制。当热拉莫尔半径尺度上的非线性去相关时间短于碰撞时间时,在速度和位置空间中通过数值方法发现了亚拉莫尔尺度上的宽频谱涨落,并具有理论预测的标度关系。这些结果很重要,因为它们确定了可能存在的一种普遍的类似柯尔莫哥洛夫的动力学湍流 regime;还因为任何产生分布函数中陀螺相位无关部分涨落的物理过程,都可能通过熵级联导致湍流加热,其加热速率随涨落幅度增加,但与碰撞频率无关。

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