Inverse cascade of magnetic helicity in magnetohydrodynamic turbulence

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Abstract

The nonlinear dynamics of magnetic helicity HM, which is responsible for large-scale magnetic structure formation in electrically conducting turbulent media, is investigated in forced and decaying three-dimensional magnetohydrodynamic turbulence. This is done with the help of high-resolution direct numerical simulations and statistical closure theory. The numerically observed spectral scaling of HM is at variance with earlier work using a statistical closure model. By revisiting this theory, a universal dynamical balance relation is found that includes the effects of kinetic helicity as well as kinetic and magnetic energies on the inverse cascade of HM and explains the above-mentioned discrepancy. Consideration of the result in the context of mean-field dynamo theory suggests a nonlinear modification of the α-dynamo effect, which is important in the context of magnetic-field excitation in turbulent plasmas. © 2012 American Physical Society.

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Müller, W. C., Malapaka, S. K., & Busse, A. (2012). Inverse cascade of magnetic helicity in magnetohydrodynamic turbulence. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 85(1). https://doi.org/10.1103/PhysRevE.85.015302

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