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Energetics of the ionospheric feedback interaction
Robert L. Lysak
, Yan Song
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
129
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Scopus citations
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Keyphrases
Joule Heating
100%
Feedback Interactions
100%
Ionospheric Feedback
100%
Convection
33%
Recombination
33%
Alfvn Waves
33%
Ionosphere
33%
Nonlinear Evolution
33%
Possible Mechanisms
33%
Field Line Resonance
33%
Scale Structure
33%
Free Energy
33%
Large Amplitude
33%
Resonator
33%
Kinetic Effects
33%
Resistivity
33%
Incident Wave
33%
Reflected Wave
33%
Dispersion Relation
33%
High Background
33%
Eigenmodes
33%
Theoretical Constraints
33%
Local Reduction
33%
Background Ionosphere
33%
Dark Background
33%
Ionospheric Feedback Instability
33%
Active Ionosphere
33%
Auroral Arc
33%
Consistent Changes
33%
Strong Gradients
33%
Energy Dissipated
33%
Low Spatial Resolution
33%
Extra Energy
33%
Physics
Energetics
100%
Conductance
100%
Resonance Line
33%
Reflected Wave
33%
Resonator
33%
Auroral Arcs
33%
Free Energy
33%
Earth and Planetary Sciences
Ionospherics
100%
Spatial Resolution
33%
Auroral Arcs
33%
Reflected Wave
33%
Resonance Line
33%
Resonator
33%
Free Energy
33%