Polar cap plasma patch primary linear instability growth rates compared
Four primary plasma instability processes have been proposed in the literature to explain the generation of phase scintillation associated with polar cap plasma patches. These are the gradient drift, current convective, and Kelvin‐Helmholtz instabilities and a small‐scale “turbulence” process. In th...
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Veröffentlicht in: | Journal of geophysical research. Space physics 2016-04, Vol.121 (4), p.3439-3451 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Four primary plasma instability processes have been proposed in the literature to explain the generation of phase scintillation associated with polar cap plasma patches. These are the gradient drift, current convective, and Kelvin‐Helmholtz instabilities and a small‐scale “turbulence” process. In this paper the range of possible values of the linear growth rates for each of these processes is explored using Dynamics Explorer 2 satellite observations. It is found that the inertial turbulence instability is the dominant process, followed by inertial gradient drift, collisional turbulence, and collisional shortwave current convective instabilities. The other processes, such as Kelvin‐Helmholtz, collisional gradient drift, and inertial shortwave current convective instabilities, very rarely ( |
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ISSN: | 2169-9380 2169-9402 |
DOI: | 10.1002/2015JA021895 |