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On the structure and statistical theory of turbulence of extended magnetohydrodynamics

机译:扩展磁流体动力学湍流的结构和统计理论

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Recent progress regarding the noncanonical Hamiltonian formulation of extended magnetohydrodynamics (XMHD), a model with Hall drift and electron inertia, is summarized. The advantages of the Hamiltonian approach are invoked to study some general properties of XMHD turbulence, and to compare them against their ideal MHD counterparts. For instance, the helicity flux transfer rates for XMHD are computed, and Liouville's theorem for this model is also verified. The latter is used, in conjunction with the absolute equilibrium states, to arrive at the spectra for the invariants, and to determine the direction of the cascades, e.g., generalizations of the well-known ideal MHD inverse cascade of magnetic helicity. After a similar analysis is conducted for XMHD by inspecting second order structure functions and absolute equilibrium states, a couple of interesting results emerge. When cross helicity is taken to be ignorable, the inverse cascade of injected magnetic helicity also occurs in the Hall MHD range—this is shown to be consistent with previous results in the literature. In contrast, in the inertial MHD range, viz at scales smaller than the electron skin depth, all spectral quantities are expected to undergo direct cascading. The consequences and relevance of our results in space and astrophysical plasmas are also briefly discussed.
机译:总结了关于扩展磁流体动力学(XMHD)的非规范哈密顿公式的最新进展,该模型具有霍尔漂移和电子惯性。汉密尔顿方法的优点被用来研究XMHD湍流的一些一般性质,并将其与理想的MHD对应物进行比较。例如,计算了XMHD的螺旋通量传递速率,并验证了该模型的Liouville定理。后者与绝对平衡状态一起用于得出不变量的频谱,并确定级联的方向,例如,众所周知的磁螺旋理想MHD逆级联的推广。通过检查二阶结构函数和绝对平衡状态对XMHD进行了类似的分析后,得出了一些有趣的结果。如果认为交叉螺旋是可忽略的,则在霍尔MHD范围内也会发生注入的磁性螺旋的反向级联,这与文献中先前的结果一致。相反,在惯性MHD范围内(即小于电子趋肤深度的尺度),所有光谱量都将经历直接级联。我们还简要讨论了我们在太空和天体等离子体中的结果的后果和相关性。

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