4.5 Article

Parametric instabilities in shallow water magnetohydrodynamics of astrophysical plasma in external magnetic field

期刊

PHYSICS LETTERS A
卷 381, 期 2, 页码 106-113

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.physleta.2016.10.011

关键词

Magnetohydrodynamics; Shallow water approximation; Nonlinear waves; Parametric instabilities; Magneto-Poincare waves; Magnetostrophic waves

资金

  1. program 7 of Russian Academy of Sciences presidium Experimental and theoretical studies of solar system objects and star planetary systems
  2. Russian Fund for basic Research grant [14-29-06065]

向作者/读者索取更多资源

This article deals with magnetohydrodynamic (MHD) flows of a thin rotating layer of astrophysical plasma in external magnetic field. We use the shallow water approximation to describe thin rotating plasma layer with a free surface in a vertical external magnetic field. The MHD shallow water equations with external vertical magnetic field are revised by supplementing them with the equations that are consequences of the magnetic field divergence-free conditions and reveal the existence of third component of the magnetic field in such approximation providing its relation with the horizontal magnetic field. It is shown that the presence of a vertical magnetic field significantly changes the dynamics of the wave processes in astrophysical plasma compared to the neutral fluid and plasma layer in a toroidal magnetic field. The equations for the nonlinear wave packets interactions are derived using the asymptotic multiscale method. The equations for three magneto-Poincare waves interactions, for three magnetostrophic waves interactions, for the interactions of two magneto-Poincare waves and for one magnetostrophic wave and two magnetostrophic wave and one magneto-Poincare wave interactions are obtained. The existence of parametric decay and parametric amplifications is predicted. We found following four types of parametric decay instabilities: magneto-Poincare wave decays into two magneto-Poincare waves, magnetostrophic wave decays into two magnetostrophic waves, magneto-Poincare wave decays into one magneto-Poincare wave and one magnetostrophic wave, magnetostrophic wave decays into one magnetostrophic wave and one magneto-Poincare wave. Following mechanisms of parametric amplifications are found: parametric amplification of magneto-Poincare waves, parametric amplification of magnetostrophic waves, magnetoPoincare wave amplification in magnetostrophic wave presence and magnetostrophic wave amplification in magneto-Poincare wave presence. The instabilities growth rates are obtained respectively. (C) 2016 Elsevier B.V. All rights reserved.

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