3D MHD simulation of linearly polarised Alfven wave dynamics in Arnold-Beltrami-Childress magnetic field
D. Tsiklauri (Queen Mary University of London)

TL;DR
This study uses 3D MHD simulations to explore linearly polarised Alfven wave dynamics in ABC magnetic fields, revealing transient energy growth and a new instability, challenging previous assumptions about wave damping.
Contribution
First direct 3D MHD simulation of Alfven wave behavior in ABC magnetic fields, uncovering transient energy growth and a novel instability beyond WKB approximation.
Findings
Alfven waves dissipate quickly but perturbation energy can increase over time.
Magnetic energy decrease is governed by resistive evolution, not wave damping.
Identified a new instability causing perturbation energy growth.
Abstract
Previous studies [Malara et al ApJ, 533, 523 (2000)] considered small-amplitude Alfven wave (AW) packets in Arnold-Beltrami-Childress (ABC) magnetic field using WKB approximation. In this work linearly polarised Alfven wave dynamics in ABC magnetic field via direct 3D MHD numerical simulation is studied for the first time. Gaussian AW pulse with length-scale much shorter than ABC domain length and harmonic AW with wavelength equal to ABC domain length are studied for four different resistivities. While it is found that AWs dissipate quickly in the ABC field, surprisingly, AW perturbation energy increases in time. In the case of the harmonic AW perturbation energy growth is transient in time, attaining peaks in both velocity and magnetic perturbation energies within timescales much smaller than resistive time. In the case of the Gaussian AW pulse velocity perturbation energy growth is…
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