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Turbulence-induced diffusion analysis of national Spherical Torus Experiment based on the gyrocenter shift
K. C. Lee
, C. W. Domier
, N. C. Luhmann
, R. Kaita
, S. S. Medley
,
S. P. Gerhardt
, H. K. Park
, S. A. Sabbagh
PPPL NSTX
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:
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›
Article
›
peer-review
3
Scopus citations
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Dive into the research topics of 'Turbulence-induced diffusion analysis of national Spherical Torus Experiment based on the gyrocenter shift'. Together they form a unique fingerprint.
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Keyphrases
Turbulence
100%
Spherical Torus
100%
Experiment-based
100%
Diffusion Analysis
100%
Induced Diffusion
100%
Radial Current
66%
Pressure Gradient
33%
Electric Field (E-field)
33%
Eddies
33%
Density Fluctuations
33%
Diffusion Coefficient
33%
Density Gradient
33%
Low Confinement
33%
Neutral Density
33%
Cross-field Transport
33%
Tokamak Plasma
33%
Confinement Time
33%
Plasma Pressure
33%
Induced Power
33%
Mode Transition
33%
Fluctuation Frequency
33%
Turbulent Transport
33%
Momentum Exchange
33%
Radial Electric Field
33%
Energy Diffusion
33%
High Confinement Mode
33%
Physics
Electric Field
100%
Pressure Gradient
50%
Tokamak Device
50%
Diffusion Coefficient
50%
Density Fluctuation
50%