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Updated: Jul 18, 2026

Magnetically Induced Rotating Rayleigh-Taylor Instability
Published on: March 3, 2017
Local model for angular-momentum transport in accretion disks driven by the magnetorotational instability
Martin E Pessah1, Chi-Kwan Chan, Dimitrios Psaltis
1Department of Astronomy, University of Arizona, Tucson, Arizona 85721, USA. mpessah@as.arizona.edu
Abstract:
We develop a local model for the exponential growth and saturation of the Reynolds and Maxwell stresses in turbulent flows driven by the magnetorotational instability. We first derive equations that describe the effects of the instability on the growth and pumping of the stresses. We highlight the relevance of a new type of correlations that couples the dynamical evolution of the Reynolds and Maxwell stresses and plays a key role in developing and sustaining the magnetorotational turbulence. We then supplement these equations with a phenomenological description of the triple correlations that lead to a saturated turbulent state. We show that the steady-state limit of the model describes successfully the correlations among stresses found in numerical simulations of shearing boxes.
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