Short wavelength stabilization of the gradient drift instability due to velocity shear

Physics

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Auroral Arcs, Equatorial Electrojet, Ionospheric Drift, Magnetohydrodynamic Stability, Short Wave Radio Transmission, Taylor Instability, Collisional Plasmas, Drift Rate, E Region, Electric Fields, Hall Effect, Plasma Clouds

Scientific paper

A nonlocal analysis of the gradient drift instability is presented. The new effect included in this theory is the allowance for an inhomogeneous electric field which produces a sheared drift velocity. It is found that velocity shear can stabilize the short wavelength modes of the instability, and preferentially excite a longer wavelength mode than would be expected based upon local theory. This result may explain the observations of dominant, long wavelength irregularities in the equatorial electrojet (Kudeki et al., 1982; Pfaff et al., 1982) and be relevant to the formation of auroral arc elements.

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