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Effect of the scrape-off layer in AORSA full wave simulations of fast wave minority, mid/high harmonic, and helicon heating regimes
Freier ZugriffAmerican Institute of Physics | 2015| -
SOL Effects on LH Wave Coupling and Current Drive Performance on Alcator C‐Mod
American Institute of Physics | 2011| -
Towards identifying the mechanisms underlying field-aligned edge-loss of HHFW power on NSTX
American Institute of Physics | 2014| -
Recent Results on Coupling Fast Waves to High Performance Plasmas on DIII‐D
American Institute of Physics | 2011| -
SPIRAL field mapping on NSTX for comparison to divertor RF heat deposition
American Institute of Physics | 2014| -
Recent Fast Wave Coupling and Heating Studies on NSTX, with Possible Implications for ITER
American Institute of Physics | 2009| -
Operating The Upgraded NSTX HHFW Antenna Array In An Environment With Li‐coated Surfaces
American Institute of Physics | 2011| -
Lower Hybrid Wave Induced SOL Emissivity Variation at High Density on the Alcator C‐Mod Tokamak
American Institute of Physics | 2011| -
HHFW Heating and Current Drive Studies of NSTX H‐Mode Plasmas
American Institute of Physics | 2011| -
Progress in LHCD modeling and experiments towards the AT regime on Alcator C‐Mod
American Institute of Physics | 2011| -
Observation of Co and Counter Rotation Produced by Lower Hybrid Waves in Alcator C‐Mod
American Institute of Physics | 2011| -
Observations of Lower Hybrid Wave Absorption in the Scrape Off Layer of a Diverted Tokamak
American Institute of Physics | 2009| -
Modification of Current Profile, Toroidal Rotation and Pedestal by Lower Hybrid Waves in Alcator C‐Mod
American Institute of Physics | 2009| -
Lower hybrid current drive in a high density diverted tokamak
American Institute of Physics | 2011|