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Mechanism for sequestering magnetic energy at large scales in shear-flow turbulence

Author
Abstract

Straining of magnetic fields by large-scale shear flow, which is generally assumed to lead to intensification and generation of small scales, is reexamined in light of the persistent observation of large-scale magnetic fields in astrophysics. It is shown that, in magnetohydrodynamic turbulence, unstable shear flows have the unexpected effect of sequestering magnetic energy at large scales due to counteracting straining motion of nonlinearly excited large-scale stable eigenmodes. This effect is quantified via dissipation rates, energy transfer rates, and visualizations of magnetic field evolution by artificially removing the stable modes. These analyses show that predictions based upon physics of the linear instability alone miss substantial dynamics, including those of magnetic fluctuations. Publicly available on juli 6, 2023 at https://www.osti.gov/pages/biblio/1875013-mechanism-sequestering-magnet…

Year of Publication
2022
Journal
Physics of Plasmas
Volume
29
Issue
7
Number of Pages
070701
URL
https://arxiv.org/abs/2205.01298
DOI
10.1063/5.0096886
PId
2e28103d93554b7aacace95a163da0da
Alternate Journal
Phys. Plasmas
Label
OA
Journal Article
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