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New Plasma Regime in Jupiter’s Auroral Zones
R. L. Lysak
,
A. H. Sulaiman
,
S. S. Elliott
, W. S. Kurth
, S. J. Bolton
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Keyphrases
Juno
100%
Jupiter
100%
Electron Plasma Frequency
100%
Auroral Zone
100%
Electron Beam
50%
High Latitude
50%
Electron Density
50%
Background Magnetic Field
50%
Wave Vector
50%
Langmuir Waves
50%
Plasma Frequency
50%
Unusual Events
50%
High Wavenumber
50%
Surface Magnetic Field
50%
Plasma Oscillations
50%
Jupiter Magnetosphere
50%
Cm(III)
50%
Langmuir Mode
50%
Large Wave number
50%
Low-density Plasma
50%
Low-frequency Dispersion
50%
Physics
Auroral Zone
100%
Plasma Frequency
100%
Magnetic Field
66%
Electron Plasma
66%
Magnetohydrodynamic Wave
33%
Magnetosphere
33%
Plasma Oscillation
33%
Electron Density
33%
Gyrofrequency
33%
Plasma Density
33%
Electron Beam
33%