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A model of turbulence in magnetized plasmas: Implications for the dissipation range in the solar wind

机译:磁化等离子体湍流的模型:对的损耗范围的影响太阳风

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This paper studies the turbulent cascade of magnetic energy in weakly collisional magnetized plasmas. A cascade model is presented, based on the assumptions of local nonlinear energy transfer in wave number space, critical balance between linear propagation and nonlinear interaction times, and the applicability of linear dissipation rates for the nonlinearly turbulent plasma. The model follows the nonlinear cascade of energy from the driving scale in the MHD regime, through the transition at the ion Larmor radius into the kinetic Alfvén wave regime, in which the turbulence is dissipated by kinetic processes. The turbulent fluctuations remain at frequencies below the ion cyclotron frequency due to the strong anisotropy of the turbulent fluctuations, k k (implied by critical balance). In this limit, the turbulence is optimally described by gyrokinetics; it is shown that the gyrokinetic approximation is well satisfied for typical slow solar wind parameters. Wave phase velocity measurements are consistent with a kinetic Alfvén wave cascade and not the onset of ion cyclotron damping. The conditions under which the gyrokinetic cascade reaches the ion cyclotron frequency are established. Cascade model solutions imply that collisionless damping provides a natural explanation for the observed range of spectral indices in the dissipation range of the solar wind. The dissipation range spectrum is predicted to be an exponential fall off; the power-law behavior apparent in observations may be an artifact of limited instrumental sensitivity. The cascade model is motivated by a program of gyrokinetic simulations of turbulence and particle heating in the solar wind.
机译:本文研究了湍流的级联在弱碰撞磁化磁场能量等离子体。假设当地的非线性能量在波数空间转移,关键的平衡之间的线性和非线性传播交互时代,和的适用性线性非线性耗散率湍流等离子体。能源推动规模的级联磁流体动力机制,通过离子的过渡拉莫尔半径动力学阿尔芬波政权,湍流消散了动力学过程。保持在频率低于离子回旋由于强烈的各向异性的频率狂暴的波动,k k(隐含的关键平衡)。优化陀螺动力学描述;gyrokinetic近似的满意为典型的缓慢太阳风参数。波相速度测量结果是一致的动力学阿尔芬波级联而不是离子回旋阻尼。在gyrokinetic级联到达建立了离子回旋频率。解决方案意味着无碰撞的阻尼模型提供了一种自然的解释范围的光谱指数的耗散范围的太阳风。光谱预测是一个指数下降要走;观察可能是有限的工件仪器灵敏度。出于gyrokinetic模拟的程序湍流和粒子加热的太阳能风。

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