Improved core high-harmonic fast wave (HHFW) heating at longer wavelengths and during start-up and plasma current ramp-up, has now been obtained by lowering the edge density with lithium wall conditioning, thereby moving the critical density for perpendicular fast-wave propagation away from the vessel wall. Lithium conditioning allowed significant HHFW core electron heating of deuterium neutral beam injection (NBI) fuelled H-mode plasmas to be observed for the first time. Large edge localized modes were observed immediately after the termination of rf power. Visible and infrared camera images show that fast wave interactions can deposit considerable rf energy on the outboard divertor. HHFW-generated parametric decay instabilities were obser...
A series of experiments was conducted to investigate the combined utilization of high-harmonics fast...
A new spectroscopic diagnostic on the National Spherical Torus Experiment (NSTX) measures the veloci...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...
Improved core high-harmonic fast wave (HHFW) heating at longer wavelengths and during start-up and p...
High Harmonic Fast Wave (HHFW) heating has been proposed as a particularly attractive means for plas...
Recent improvements in high-harmonic fast wave (HHFW) core heating in NSTX are attributed to using l...
Understanding the interaction between ion cyclotron range of frequency (ICRF) fast waves and the fas...
The study of high-harmonic fast-wave (HHFW) heating and current drive is being conducted on the Nati...
High Harmonic Fast Wave (HHFW) Heating has been proposed as a particularly attractive means for plas...
A critical research goal for the spherical torus (ST) program is to initiate, ramp-up, and sustain a...
30 MHz high-harmonic fast wave (HHFW) heating and current drive are being developed to assist fully ...
Recent results obtained with high harmonic fast wave (HHFW) heating and current drive (CD) on NSTX s...
Experiments have been performed in the National Spherical Torus Experiment (NSTX) to inject high har...
The goal of the high harmonic fast wave (HHFW) research on NSTX is to maximize the coupling of RF po...
High harmonic fast wave heating and current drive (CD) are being developed on the National Spherical...
A series of experiments was conducted to investigate the combined utilization of high-harmonics fast...
A new spectroscopic diagnostic on the National Spherical Torus Experiment (NSTX) measures the veloci...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...
Improved core high-harmonic fast wave (HHFW) heating at longer wavelengths and during start-up and p...
High Harmonic Fast Wave (HHFW) heating has been proposed as a particularly attractive means for plas...
Recent improvements in high-harmonic fast wave (HHFW) core heating in NSTX are attributed to using l...
Understanding the interaction between ion cyclotron range of frequency (ICRF) fast waves and the fas...
The study of high-harmonic fast-wave (HHFW) heating and current drive is being conducted on the Nati...
High Harmonic Fast Wave (HHFW) Heating has been proposed as a particularly attractive means for plas...
A critical research goal for the spherical torus (ST) program is to initiate, ramp-up, and sustain a...
30 MHz high-harmonic fast wave (HHFW) heating and current drive are being developed to assist fully ...
Recent results obtained with high harmonic fast wave (HHFW) heating and current drive (CD) on NSTX s...
Experiments have been performed in the National Spherical Torus Experiment (NSTX) to inject high har...
The goal of the high harmonic fast wave (HHFW) research on NSTX is to maximize the coupling of RF po...
High harmonic fast wave heating and current drive (CD) are being developed on the National Spherical...
A series of experiments was conducted to investigate the combined utilization of high-harmonics fast...
A new spectroscopic diagnostic on the National Spherical Torus Experiment (NSTX) measures the veloci...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...