Scale-lengths and instabilities in magnetized classical and relativistic plasma fluid models

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Abstract

The validity of the traditional plasma continuum is predicated on a hierarchy of scale-lengths, with the Debye length being considered to be effectively unresolvable in the continuum limit. In this article, we revisit the strong magnetic field case in which the Larmor radius is comparable or smaller than the Debye length in the classical plasma, and also for a relativistic plasma. Fresh insight into the validity of the continuum assumption in each case is offered, including a fluid limit on the Alfvén speed that may impose restrictions on the validity of magnetohydrodynamics (MHD) in some solar and fusion contexts. Additional implications concerning the role of the firehose instability are also explored.

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Diver, D. A., & Laing, E. W. (2015). Scale-lengths and instabilities in magnetized classical and relativistic plasma fluid models. Physica Scripta, 90(2). https://doi.org/10.1088/0031-8949/90/2/025602

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