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Edge gyrokinetic theory and continuum simulations
X. Q. Xu
, Z. Xiong
, M. R. Dorr
, J. A. Hittinger
, K. Bodi
, J. Candy
, B. I. Cohen
, R. H. Cohen
, P. Colella
, G. D. Kerbel
, S. Krasheninnikov
, W. M. Nevins
, H. Qin
, T. D. Rognlien
, P. B. Snyder
, M. V. Umansky
PPPL Computational Science
Research output
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Contribution to journal
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Article
›
peer-review
44
Scopus citations
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Keyphrases
Temps
100%
Continuum Simulation
100%
Theory Simulation
100%
Gyrokinetic Theory
100%
Numerical Results
50%
Electric Field (E-field)
50%
Velocity Space
50%
Fully Nonlinear
50%
Collisionality
50%
Collisionless Damping
50%
Temperature Gradient
50%
Ludwig Boltzmann
50%
Ion Temperature Gradient Mode
50%
Edge Plasma
50%
Confining Potential
50%
Banana
50%
Parallel Flow
50%
Zero Temperature
50%
Ion Flow
50%
Analytic Results
50%
Magnetic Well
50%
Zonal Flow
50%
Gyrokinetics
50%
Divertor Geometry
50%
Large Aspect Ratio
50%
Radial Electric Field
50%
Parallel Streaming
50%
Circular Geometry
50%
Gradient Field
50%
Self-consistent Simulation
50%
Plateau Regime
50%
Geodesic Acoustic Mode
50%
Required Velocity
50%
Engineering
Electric Field
100%
Thermal Gradient
100%
Temperature Gradient
100%
Simulation Result
50%
Good Agreement
50%
Boltzmann Equation
50%
Parallel Flow
50%
Acoustic Mode
50%
Circular Geometry
50%
Aspect Ratio
50%
Physics
Temperature Gradients
100%
Electric Field
100%
Aspect Ratio
50%
Ion Temperature
50%
Electrostatics
50%
Parallel Flow
50%
Zero-Temperature
50%
Zonal Flow
50%
Earth and Planetary Sciences
Electric Field
100%
Ion Temperature
50%
Zonal Flow
50%
Confining
50%
Parallel Flow
50%