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Ponderomotive lower hybrid wave growth in electric fields associated with electron beam injection and transverse ion acceleration
S. D. Bale
,
P. J. Kellogg
, K. N. Erickson
, S. J. Monson
, R. L. Arnoldy
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
Overview
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Keyphrases
Band Power
50%
Cyclotron Frequency
50%
Cyclotron Waves
50%
Electric Field (E-field)
100%
Electric Field Waveforms
50%
Electron Acceleration
50%
Electron Beam Injection
100%
Ion Acceleration
100%
Ion Cyclotron
50%
Low-frequency Fluctuations
50%
Lower Hybrid Resonance
50%
Lower Hybrid Wave
100%
Nonlinear Mode Coupling
50%
Ponderomotive
100%
Return Current
50%
Rocket
50%
Wave Growth
100%
Physics
Beam Injection
100%
Broadband
50%
Coupled Mode
50%
Cyclotron Frequency
50%
Electric Field
100%
Electron Beam
100%
Earth and Planetary Sciences
Beam Injection
100%
Broadband
50%
Coupled Mode
50%
Cyclotron Frequency
50%
Electric Field
100%
Electron Beam
100%
Engineering
Broad Band
50%
Electric Field
100%