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Magneto-immutable turbulence in weakly collisional plasmas

Resource type
Authors/contributors
Title
Magneto-immutable turbulence in weakly collisional plasmas
Abstract
We propose that pressure anisotropy causes weakly collisional turbulent plasmas to self-organize so as to resist changes in magnetic-field strength. We term this effect ‘magneto-immutability’ by analogy with incompressibility (resistance to changes in pressure). The effect is important when the pressure anisotropy becomes comparable to the magnetic pressure, suggesting that in collisionless, weakly magnetized (high-β𝛽\unicode[STIX]{x1D6FD}) plasmas its dynamical relevance is similar to that of incompressibility. Simulations of magnetized turbulence using the weakly collisional Braginskii model show that magneto-immutable turbulence is surprisingly similar, in most statistical measures, to critically balanced magnetohydrodynamic turbulence. However, in order to minimize magnetic-field variation, the flow direction becomes more constrained than in magnetohydrodynamics, and the turbulence is more strongly dominated by magnetic energy (a non-zero ‘residual energy’). These effects represent key differences between pressure-anisotropic and fluid turbulence, and should be observable in the β≳1𝛽≳1\unicode[STIX]{x1D6FD}\gtrsim 1 turbulent solar wind.
Publication
Journal of Plasma Physics
Volume
85
Issue
1
Pages
905850114
Date
2019/02
Language
en
ISSN
0022-3778, 1469-7807
Accessed
8/29/24, 10:20 AM
Library Catalog
Cambridge University Press
Extra
22 citations (Crossref/DOI) [2024-10-03] 22 citations (Crossref/DOI) [2024-10-02]
Citation
Squire, J., Schekochihin, A. A., Quataert, E., & Kunz, M. W. (2019). Magneto-immutable turbulence in weakly collisional plasmas. Journal of Plasma Physics, 85(1), 905850114. https://doi.org/10.1017/S0022377819000114
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