论文标题

动力学alfvén波湍流中的级联反相和磁涡流

Inverse cascade and magnetic vortices in kinetic Alfvén-wave turbulence

论文作者

Miloshevich, George, Laveder, Dimitri, Passot, Thierry, Sulem, Pierre-Louis

论文摘要

在磁化电子普罗希望血浆中的动力学Alfvén波(KAWS)的哈密顿量两场陀螺仪模型,保留了离子有限的 - 拉多拉德矫正和平行磁场波动,用于研究当涡轮在子离子尺度上随机驱动时会出现的逆升华。在垂直于环境场的方向上,级联反应的动力学是非本地的,并且波周期的比率$χ_f$与驾驶量表下的特征非线性时间影响了其某些属性。例如,在$χ_f$的小值下,由强迫驱动的模式的参数衰减不稳定性可以发展,并增强一段时间的反转移。在两个反向传播的波相同驱动时,在早期获得的平衡状态也在小$χ_f$下变得不稳定,从而导致级联反向。对于$β_E$比几个单位小的$β_E$,在达到低分散光谱范围时,级联反应会减慢。对于较高的$β_E$,KAW与Alfvén频率的比率显示出局部最小值。在相应的横向波数中,形成冷凝物,然后抑制朝向较大尺度的级联反应。根据参数,可以发展平行的逆级联反向,从而增强了通常形成的离子尺度磁涡旋的伸长。

A Hamiltonian two-field gyrofluid model for kinetic Alfvén waves (KAWs) in a magnetized electron-proton plasma, retaining ion finite-Larmor-radius corrections and parallel magnetic field fluctuations, is used to study the inverse cascades that develop when turbulence is randomly driven at sub-ion scales. In the directions perpendicular to the ambient field, the dynamics of the cascade turns out to be nonlocal and the ratio $χ_f$ of the wave period to the characteristic nonlinear time at the driving scale affect some of its properties. For example, at small values of $χ_f$, parametric decay instability of the modes driven by the forcing can develop, enhancing for a while inverse transfers. The balanced state, obtained at early time when the two counter-propagating waves are equally driven, also becomes unstable at small $χ_f$, leading to an inverse cascade. For $β_e$ smaller than a few units, the cascade slows down when reaching the low-dispersion spectral range. For higher $β_e$, the ratio of the KAW to the Alfvén frequencies displays a local minimum. At the corresponding transverse wavenumber, a condensate is formed, and the cascade towards larger scales is then inhibited. Depending on the parameters, a parallel inverse cascade can develop, enhancing the elongation of the ion-scale magnetic vortices that generically form.

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