The canonical vorticity framework and its applications in collisionless, magnetized plasma physics

Young Dae Yoon
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Abstract

I briefly review the canonical vorticity theoretical framework and its applications in collisionless, magnetized plasma physics. The canonical vorticity is a weighted sum of the fluid vorticity and the magnetic field and is equal to the curl of the canonical momentum. By taking this variable as the primary variable instead of the magnetic field, various phenomena that require non-MHD effect in their scrutiny can be simplified. Two examples are given, namely magnetic reconnection and magnetogenesis, and exactly how the canonical vorticity framework simplifies their analyses is described. Suggestions for future work are also delineated.

正则涡度框架及其在无碰撞磁化等离子体物理中的应用
简要回顾经典涡度理论框架及其在无碰撞磁化等离子体物理中的应用。正则涡度是流体涡度和磁场的加权和,等于正则动量的旋度。通过将该变量代替磁场作为主要变量,可以简化各种需要非mhd效应的现象。给出了两个例子,即磁重联和磁发生,并准确地描述了典型涡度框架如何简化它们的分析。并对今后的工作提出了建议。
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CiteScore
8.20
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