论文标题

谐振吸收:将压缩运动转化为涡旋运动

Resonant absorption: transformation of compressive motions into vortical motions

论文作者

Goossens, M., Arregui, I., Soler, R., Van Doorsselaere, T.

论文摘要

本文研究了磁性水力动力学(MHD)波在Alfvén连续体中经历谐振阻尼时的空间特性变化。对具有直磁场的1D圆柱无压力等离子体进行了分析。阻尼对空间波变量的影响是通过使用谐振阻尼产生的复杂频率来确定的。压缩和涡度用于表征MHD波的空间演化。最引人注目的结果是平行于磁场的涡度分量的空间变化很大。平行涡度在平衡的均匀部分中消失。但是,当MHD波移入不均匀的部分时,平行的涡度爆炸到值比正常磁场正常的平面中横向成分所获得的值高的值。在平衡等离子体的不均匀部分中,MHD波由平行涡度控制并类似于Alfvén波,即使在线性状态下,它具有压力变化的陌生性质。

This paper investigates the changes in spatial properties when magnetohydrodynamic (MHD) waves undergo resonant damping in the Alfvén continuum. The analysis is carried out for a 1D cylindrical pressure-less plasma with a straight magnetic field. The effect of the damping on the spatial wave variables is determined by using complex frequencies that arise as a result of the resonant damping. Compression and vorticity are used to characterise the spatial evolution of the MHD wave. The most striking result is the huge spatial variation in the vorticity component parallel to the magnetic field. Parallel vorticity vanishes in the uniform part of the equilibrium. However, when the MHD wave moves into the non-uniform part, parallel vorticity explodes to values that are orders of magnitude higher than those attained by the transverse components in planes normal to the straight magnetic field. In the non-uniform part of the equilibrium plasma, the MHD wave is controlled by parallel vorticity and resembles an Alfvén wave, with the unfamiliar property that it has pressure variations even in the linear regime.

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