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arxiv: 1405.6220 · v1 · pith:IZCWPJKSnew · submitted 2014-05-23 · 🌌 astro-ph.HE · physics.plasm-ph

Kelvin-Helmholtz versus Hall Magneto-shear instability in astrophysical flows

classification 🌌 astro-ph.HE physics.plasm-ph
keywords instabilityhallkelvin-helmholtzmagneto-shearflowsplasmashearactually
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We study the stability of shear flows in a fully ionized plasma. Kelvin-Helmholtz is a well known, macroscopic and ideal shear-driven instability. In sufficiently low density plasmas, also the microscopic Hall magneto-shear instability can take place. We performed three-dimensional simulations of the Hall-MHD equations where these two instabilities are present, and carried out a comparative study. We find that when the shear flow is so intense that its vorticity surpasses the ion-cyclotron frequency of the plasma, the Hall magneto-shear instability is not only non-negligible, but it actually displays growth rates larger than those of the Kelvin-Helmholtz instability.

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