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A Landau fluid model for electromagnetic plasma microturbulence
P. B. Snyder
,
G. W. Hammett
PPPL Computational Science
Research output
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Contribution to journal
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Article
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peer-review
107
Scopus citations
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Keyphrases
Microturbulence
100%
Fluid Model
100%
Kinetic Effects
66%
Mass Ratio
33%
Mean Free Path
33%
Tokamak
33%
Multispecies
33%
Electron Dynamics
33%
Ballooning Instability
33%
Ion Temperature Gradient Mode
33%
Electrostatic Perturbations
33%
Magnetic Perturbations
33%
Fluid Equations
33%
Finite Larmor Radius Effect
33%
Gyrokinetics
33%
Fluid Closure
33%
Drift Effect
33%
Ion Drift
33%
Reduced Description
33%
Temperature Kinetics
33%
Gyrokinetic Equation
33%
Characteristic Ions
33%
Physics
Mass Ratio
100%
Mean Free Path
100%
Tokamak Device
100%
Ion Temperature
100%
Temperature Gradients
100%
Electrostatics
100%
Larmor Radius
100%
Earth and Planetary Sciences
Tokamak Device
100%
Ion Temperature
100%
Mass Ratio
100%
Mean Free Path
100%
Engineering
Fluid Model
100%
Mean Free Path
33%
Kinetic Model
33%
Tokamak Device
33%
Thermal Gradient
33%
Temperature Gradient
33%
Mass Ratio
33%
Chemical Engineering
Thermal Gradient
100%
Chemical Kinetics Characteristics
100%