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arxiv: 1304.0190 · v4 · pith:LN654Y5Rnew · submitted 2013-03-31 · 🌌 astro-ph.SR · physics.comp-ph

Fluctuation dynamo amplified by intermittent shear bursts in convectively driven magnetohydrodynamic turbulence

classification 🌌 astro-ph.SR physics.comp-ph
keywords intermittentdynamomagneticactionconvectiveenergylarge-scalemagnetohydrodynamic
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Intermittent large-scale high-shear flows are found to occur frequently and spontaneously in direct numerical simulations of statistically stationary turbulent Boussinesq magnetohydrodynamic (MHD) convection. The energetic steady-state of the system is sustained by convective driving of the velocity field and small-scale dynamo action. The intermittent emergence of flow structures with strong velocity and magnetic shearing generates magnetic energy at an elevated rate over time-scales longer than the characteristic time of the large-scale convective motion. The resilience of magnetic energy amplification suggests that intermittent shear-bursts are a significant driver of dynamo action in turbulent magnetoconvection.

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