Radio-frequency power at 30 MHz has been applied in a variety of situations to National Spherical Torus Experiment (NSTX) plasmas. The response of the plasma is observed in order to study both the physics of High Harmonic Fast Wave (HHFW) heating and as a tool to extend the performance of NSTX plasmas. In this paper we will discuss the progress made to date towards these goals
High harmonic fast waves (HHFW) have been chosen as the primary method to drive steady state current...
The goal of the high harmonic fast wave (HHFW) research on NSTX is to maximize the coupling of RF po...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...
The study of high-harmonic fast-wave (HHFW) heating and current drive is being conducted on the Nati...
A radio frequency (rf) system has been installed on the National Spherical Torus Experiment (NSTX) w...
The study of high harmonic fast wave (HHFW) heating and current drive is being conducted on the NSTX...
High Harmonic Fast Wave (HHFW) heating has been proposed as a particularly attractive means for plas...
High Harmonic Fast Wave (HHFW) Heating has been proposed as a particularly attractive means for plas...
A new spectroscopic diagnostic on the National Spherical Torus Experiment (NSTX) measures the veloci...
Experiments have been performed in the National Spherical Torus Experiment (NSTX) to inject high har...
Noninductive current drive is required during plasma initiation and for current sustainment in the N...
A major research goal of the national spherical torus experiment is establishing long-pulse, high be...
30 MHz high-harmonic fast wave (HHFW) heating and current drive are being developed to assist fully ...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...
The National Spherical Torus Experiment (NSTX) produces plasmas with aspect ratio A {triple_bond} R/...
High harmonic fast waves (HHFW) have been chosen as the primary method to drive steady state current...
The goal of the high harmonic fast wave (HHFW) research on NSTX is to maximize the coupling of RF po...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...
The study of high-harmonic fast-wave (HHFW) heating and current drive is being conducted on the Nati...
A radio frequency (rf) system has been installed on the National Spherical Torus Experiment (NSTX) w...
The study of high harmonic fast wave (HHFW) heating and current drive is being conducted on the NSTX...
High Harmonic Fast Wave (HHFW) heating has been proposed as a particularly attractive means for plas...
High Harmonic Fast Wave (HHFW) Heating has been proposed as a particularly attractive means for plas...
A new spectroscopic diagnostic on the National Spherical Torus Experiment (NSTX) measures the veloci...
Experiments have been performed in the National Spherical Torus Experiment (NSTX) to inject high har...
Noninductive current drive is required during plasma initiation and for current sustainment in the N...
A major research goal of the national spherical torus experiment is establishing long-pulse, high be...
30 MHz high-harmonic fast wave (HHFW) heating and current drive are being developed to assist fully ...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...
The National Spherical Torus Experiment (NSTX) produces plasmas with aspect ratio A {triple_bond} R/...
High harmonic fast waves (HHFW) have been chosen as the primary method to drive steady state current...
The goal of the high harmonic fast wave (HHFW) research on NSTX is to maximize the coupling of RF po...
NSTX is a small aspect ratio tokamak (R = 0.85 m, a = 0.65 m). The High Harmonic Fast Wave (HHFW) sy...