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Nonlocal kinetic theory of Alfvén waves on dipolar field lines
Robert L. Lysak
, Yan Song
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
53
Scopus citations
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Keyphrases
Field Lines
100%
Alfvn Waves
100%
Kinetic Theory
100%
Nonlocal Kinetics
100%
Dipolar Field
100%
Speed Profile
66%
Auroral
33%
Auroral Electrons
33%
Low-frequency Waves
33%
Energy Dissipation
33%
Increased Temperature
33%
Particle Model
33%
Accelerated Particle
33%
Non-self
33%
Significant Energy
33%
Self-consistency
33%
Electron Temperature
33%
Resonator
33%
Pitch Angle
33%
Kinetic Effects
33%
Quasi-static
33%
Parallel Electric Field
33%
Dipole Field
33%
Electron Acceleration
33%
Wave Structure
33%
Electron Motion
33%
Joule Dissipation
33%
Static Acceleration
33%
Inverted-V Structure
33%
Earth and Planetary Sciences
Ionospherics
100%
Kinetic Theory
100%
Electron Energy
50%
Resonator
50%
Electric Field
50%
Energy Dissipation
50%
Engineering
Field Line
100%
Increasing Temperature
33%
Resonator
33%
Energy Dissipation
33%
Pitch Angle
33%
Dipole Field
33%
Electric Field
33%
Electron Energy
33%
Physics
Kinetic Theory
100%
Electron Energy
50%
Resonator
50%
Electric Field
50%